<?xml version="1.0" encoding="UTF-8"?>
<VIOLIN>
	<pathogen pathogen_id="pathogen236">
		<pathogen_name>Experimental autoimmune uveitis</pathogen_name>
		<taxon_id></taxon_id>
		<pathogenesis refs=""></pathogenesis>
		<disease_name>Experimental autoimmune uveitis</disease_name>
		<protective_immunity refs=""></protective_immunity>
		<host_range refs=""></host_range>
		<introduction refs="reference2729">Experimental autoimmune uveitis (EAU) is an organ-specific, T cellâ€“mediated disease that targets the posterior pole of the eye. It is also a valuable, well-characterized model for the study of human idiopathic uveitis. This disease can be induced in susceptible primates and rodents after immunization with retinal self-antigens, such as interphotoreceptor retinoid-binding protein (IRBP) or S-antigen (arrestin), or by the adoptive transfer of uveitis antigen-specific T cells (Commodaro et al., 2010).</introduction>
	</pathogen>

	<host host_id="host55">
		<common_name>Baboon</common_name>
		<scientific_name>Papio cynocephalus</scientific_name>
		<taxon_id>9556</taxon_id>
    </host>
	<host host_id="host43">
		<common_name>Bank vole</common_name>
		<scientific_name>Clethrionomys glareolus</scientific_name>
		<taxon_id>447135</taxon_id>
    </host>
	<host host_id="host31">
		<common_name>Bear</common_name>
		<scientific_name>Ursus americanus</scientific_name>
		<taxon_id>9643</taxon_id>
    </host>
	<host host_id="host51">
		<common_name>Birds</common_name>
		<scientific_name>Passeroidea</scientific_name>
		<taxon_id>175121</taxon_id>
    </host>
	<host host_id="host35">
		<common_name>Brown Trout</common_name>
		<scientific_name>Salmo trutta</scientific_name>
		<taxon_id>8032</taxon_id>
    </host>
	<host host_id="host30">
		<common_name>Buffalo</common_name>
		<scientific_name>Bison bison</scientific_name>
		<taxon_id>9901</taxon_id>
    </host>
	<host host_id="host53">
		<common_name>Carnivores</common_name>
		<scientific_name>Vulpes</scientific_name>
		<taxon_id>9625</taxon_id>
    </host>
	<host host_id="host37">
		<common_name>Cat</common_name>
		<scientific_name>Felis catus</scientific_name>
		<taxon_id>9685</taxon_id>
    </host>
	<host host_id="host52">
		<common_name>Catfishes</common_name>
		<scientific_name>Siluriformes</scientific_name>
		<taxon_id>7995</taxon_id>
    </host>
	<host host_id="host12">
		<common_name>Cattle</common_name>
		<scientific_name>Bos taurus</scientific_name>
		<taxon_id>9913</taxon_id>
    </host>
	<host host_id="host8">
		<common_name>Chicken</common_name>
		<scientific_name>Gallus gallus</scientific_name>
		<taxon_id>9031</taxon_id>
    </host>
	<host host_id="host42">
		<common_name>Chimpanzee</common_name>
		<scientific_name>Pan troglodytes</scientific_name>
		<taxon_id>9598</taxon_id>
    </host>
	<host host_id="host26">
		<common_name>chinchillas</common_name>
		<scientific_name>Chinchillidae</scientific_name>
		<taxon_id>10150</taxon_id>
    </host>
	<host host_id="host24">
		<common_name>Copper Pheasant</common_name>
		<scientific_name>Syrmaticus soemmerringii</scientific_name>
		<taxon_id>9067</taxon_id>
    </host>
	<host host_id="host29">
		<common_name>Deer</common_name>
		<scientific_name>Cervus elaphus</scientific_name>
		<taxon_id>9860</taxon_id>
    </host>
	<host host_id="host32">
		<common_name>Deer mouse</common_name>
		<scientific_name>Peromyscus maniculatus</scientific_name>
		<taxon_id>10042</taxon_id>
    </host>
	<host host_id="host36">
		<common_name>Dog</common_name>
		<scientific_name>Canis familiaris</scientific_name>
		<taxon_id>9615</taxon_id>
    </host>
	<host host_id="host9">
		<common_name>Ducks</common_name>
		<scientific_name>Anas</scientific_name>
		<taxon_id>8835</taxon_id>
    </host>
	<host host_id="host19">
		<common_name>Ferret</common_name>
		<scientific_name>Mustela putorius furo</scientific_name>
		<taxon_id>9669</taxon_id>
    </host>
	<host host_id="host48">
		<common_name>Fish</common_name>
		<scientific_name>Hyperotreti</scientific_name>
		<taxon_id>117565</taxon_id>
    </host>
	<host host_id="host41">
		<common_name>Gerbil</common_name>
		<scientific_name>Gerbillina</scientific_name>
		<taxon_id>10045</taxon_id>
    </host>
	<host host_id="host13">
		<common_name>Goat</common_name>
		<scientific_name>Capra hircus</scientific_name>
		<taxon_id>9925</taxon_id>
    </host>
	<host host_id="host47">
		<common_name>Gray wolf</common_name>
		<scientific_name>Canis lupus</scientific_name>
		<taxon_id>9612</taxon_id>
    </host>
	<host host_id="host7">
		<common_name>Guinea pig</common_name>
		<scientific_name>Cavia porcellus</scientific_name>
		<taxon_id>10141</taxon_id>
    </host>
	<host host_id="host16">
		<common_name>Hamster</common_name>
		<scientific_name>Mesocricetus auratus</scientific_name>
		<taxon_id>10036</taxon_id>
    </host>
	<host host_id="host18">
		<common_name>Horse</common_name>
		<scientific_name>Equus caballus</scientific_name>
		<taxon_id>9796</taxon_id>
    </host>
	<host host_id="host2">
		<common_name>Human</common_name>
		<scientific_name>Homo sapiens</scientific_name>
		<taxon_id>9606</taxon_id>
    </host>
	<host host_id="host39">
		<common_name>Macaque</common_name>
		<scientific_name>Macaca fascicularis</scientific_name>
		<taxon_id>9541</taxon_id>
    </host>
	<host host_id="host40">
		<common_name>Mongolian Gerbil</common_name>
		<scientific_name>Meriones unguiculatus</scientific_name>
		<taxon_id>10047</taxon_id>
    </host>
	<host host_id="host5">
		<common_name>Monkey</common_name>
		<scientific_name>Platyrrhini</scientific_name>
		<taxon_id>9479</taxon_id>
    </host>
	<host host_id="host3">
		<common_name>Mouse</common_name>
		<scientific_name>Mus musculus</scientific_name>
		<taxon_id>10090</taxon_id>
    </host>
	<host host_id="host59">
		<common_name>None</common_name>
		<scientific_name>None</scientific_name>
		<taxon_id></taxon_id>
    </host>
	<host host_id="host50">
		<common_name>Parrot</common_name>
		<scientific_name>Psittacidae</scientific_name>
		<taxon_id>9224</taxon_id>
    </host>
	<host host_id="host15">
		<common_name>Pig</common_name>
		<scientific_name>Sus scrofa</scientific_name>
		<taxon_id>9823</taxon_id>
    </host>
	<host host_id="host6">
		<common_name>Rabbit</common_name>
		<scientific_name>Oryctolagus cuniculus</scientific_name>
		<taxon_id>9986</taxon_id>
    </host>
	<host host_id="host45">
		<common_name>Rainbow trout</common_name>
		<scientific_name>Oncorhynchus mykiss</scientific_name>
		<taxon_id>8022</taxon_id>
    </host>
	<host host_id="host4">
		<common_name>Rat</common_name>
		<scientific_name>Rattus</scientific_name>
		<taxon_id>10114</taxon_id>
    </host>
	<host host_id="host34">
		<common_name>Raven</common_name>
		<scientific_name>Corvus corax</scientific_name>
		<taxon_id>56781</taxon_id>
    </host>
	<host host_id="host54">
		<common_name>sei whale</common_name>
		<scientific_name>Balaenoptera borealis</scientific_name>
		<taxon_id>9768</taxon_id>
    </host>
	<host host_id="host17">
		<common_name>Sheep</common_name>
		<scientific_name>Ovis aries</scientific_name>
		<taxon_id>9940</taxon_id>
    </host>
	<host host_id="host28">
		<common_name>Squirrel</common_name>
		<scientific_name>Spermophilus richardsonii</scientific_name>
		<taxon_id>37591</taxon_id>
    </host>
	<host host_id="host44">
		<common_name>Tree shrew</common_name>
		<scientific_name>Tupaiidae</scientific_name>
		<taxon_id>9393</taxon_id>
    </host>
	<host host_id="host49">
		<common_name>Trouts, salmons & chars</common_name>
		<scientific_name>Salmoninae</scientific_name>
		<taxon_id>504568</taxon_id>
    </host>
	<host host_id="host38">
		<common_name>Turkey</common_name>
		<scientific_name>Meleagris gallopavo</scientific_name>
		<taxon_id>9103</taxon_id>
    </host>
	<host host_id="host33">
		<common_name>Vole</common_name>
		<scientific_name>Microtus ochrogaster</scientific_name>
		<taxon_id>79684</taxon_id>
    </host>
	<host host_id="host27">
		<common_name>Water buffalo</common_name>
		<scientific_name>Bubalus bubalis</scientific_name>
		<taxon_id>391902</taxon_id>
    </host>
	<vaccine vaccine_id="vaccine3649">
		<vaccine_name>EAU DNA vaccine IRBP-DNA encoding IRBP</vaccine_name>
		<proper_name></proper_name>
		<brand_name></brand_name>
		<manufacturer></manufacturer>
		<vo_id>VO_0004402</vo_id>
		<type>DNA vaccine</type>
		<status>Research</status>
		<vector>pcDNA3.1 [Ref2314:Silver et al., 2007]</vector>
		<route>Intravenous injection (i.v.)</route>
		<location_licensed></location_licensed>
		<description refs=""></description>
		<adjuvant refs=""></adjuvant>
		<storage refs=""></storage>
		<virulence refs=""></virulence>
		<preparation refs=""></preparation>
		<route refs="">Intravenous injection (i.v.)</route>
		<antigen refs=""></antigen>

		<gene_engineering gene_engineering_id="gene_engineering1189" gene_id="gene1611">
			<type>DNA vaccine construction</type>
			<description refs="reference2314">Vector pcDNA3.1 expressed the uveitogenic retinal Ag interphotoreceptor retinoid-binding protein (IRBP) (Silver et al., 2007).</description>
		</gene_engineering>
		<host_response host_response_id="host_response1434" host_id="host3">
			<immune_response refs="reference2314">IRBP-specific CD4+CD25high T cells could be cultured from vaccinated mice and transferred protection to unvaccinated, EAU-challenged recipients. Expression of IRBP in the periphery by DNA vaccination results in tolerance that acts at least in part through induction of IRBP-specific, FoxP3+CD4+CD25+ regulatory T cells (Silver et al., 2007).</immune_response>
			<host_strain refs=""></host_strain>
			<vaccination_protocol refs=""></vaccination_protocol>
			<persistence refs=""></persistence>
			<immune_response_type refs="">VO_0000286</immune_response_type>
			<immune_response_type refs=""></immune_response_type>
			<protection_efficacy refs="reference2314">Vaccinated mice were highly protected from EAU induced by immunization with IRBP for at least 10 weeks after vaccination (Silver et al., 2007).</protection_efficacy>
			<side_effects refs=""></side_effects>
			<challenge_protocol refs=""></challenge_protocol>
			<description refs=""></description>
		</host_response>
	</vaccine>
	<gene gene_id="gene1611">
        <gene_name>IRBP from humans</gene_name>
        <strain>Homo sapiens</strain>
        <vo_id></vo_id>
        <ncbi_gene_id>5949</ncbi_gene_id>
        <ncbi_nucleotide_id></ncbi_nucleotide_id>
        <ncbi_protein_id>4506453</ncbi_protein_id>
        <gene_locus_tag></gene_locus_tag>
        <gene_refseq>AH002852</gene_refseq>
        <protein_refseq>NP_002891</protein_refseq>
        <pdb_id></pdb_id>
        <xrefs></xrefs>
        <taxonomy_id>9606</taxonomy_id>
        <chromosome>10</chromosome>
        <segment></segment>
        <plasmid></plasmid>
        <gene_start>47348370</gene_start>
        <gene_end>47357874</gene_end>
        <gene_strand>+</gene_strand>
        <protein_name>retinol binding protein 3</protein_name>
        <protein_pi>4.76</protein_pi>
        <protein_weight>124350.97</protein_weight>
        <protein_length>1247</protein_length>
        <protein_note>Also known as IRBP; RBPI; D10S64; D10S65; D10S66</protein_note>
        <protein_annotation></protein_annotation>
        <dna_sequence>>NC_000010.11:47348370-47357874 Homo sapiens chromosome 10, GRCh38.p12 Primary Assembly
CTGTCCACCAGCTGAGAAGGACAAGGGCGGAAGGCAGCTGCACAGAGCAGGGCCACGGCCTTGCACACAG
TCCAGGGAGCTTTTGTGCAGGAGCCAGGCCTCCCCCTGGGTCCCCATGATGAGAGAATGGGTTCTGCTCA
TGTCCGTGCTGCTCTGTGGCCTGGCTGGCCCCACACACCTGTTCCAGCCAAGCCTGGTGCTGGACATGGC
CAAGGTCCTCTTGGATAACTACTGCTTCCCGGAGAACCTGCTGGGCATGCAGGAAGCCATCCAGCAGGCC
ATCAAGAGCCATGAGATTCTGAGCATCTCAGACCCGCAGACGCTGGCCAGTGTGCTGACAGCCGGGGTGC
AGAGCTCCCTGAACGATCCTCGCCTGGTCATCTCCTATGAGCCCAGCACCCCCGAGCCTCCCCCACAAGT
CCCAGCACTCACCAGCCTCTCAGAAGAGGAACTGCTTGCCTGGCTGCAAAGGGGCCTCCGCCATGAGGTT
CTGGAGGGTAATGTGGGCTACCTGCGGGTGGACAGCGTCCCGGGCCAGGAGGTGCTGAGCATGATGGGGG
AGTTCCTGGTGGCCCACGTGTGGGGGAATCTCATGGGCACCTCCGCCTTAGTGCTGGATCTCCGGCACTG
CACAGGAGGCCAGGTCTCTGGCATTCCCTACATCATCTCCTACCTGCACCCAGGGAACACCATCCTGCAC
GTGGACACTATCTACAACCGCCCCTCCAACACCACCACGGAGATCTGGACCTTGCCCCAGGTCCTGGGAG
AAAGGTACGGTGCCGACAAGGATGTGGTGGTCCTCACCAGCAGCCAGACCAGGGGCGTGGCCGAGGACAT
CGCGCACATCCTTAAGCAGATGCGCAGGGCCATCGTGGTGGGCGAGCGGACTGGGGGAGGGGCCCTGGAC
CTCCGGAAGCTGAGGATAGGCGAGTCTGACTTCTTCTTCACGGTGCCCGTGTCCAGGTCCCTGGGGCCCC
TTGGTGGAGGCAGCCAGACGTGGGAGGGCAGCGGGGTGCTGCCCTGTGTGGGGACTCCGGCCGAGCAGGC
CCTGGAGAAAGCCCTGGCCATCCTCACTCTGCGCAGCGCCCTTCCAGGGGTAGTCCACTGCCTCCAGGAG
GTCCTGAAGGACTACTACACGCTGGTGGACCGTGTGCCCACCCTGCTGCAGCACTTGGCCAGCATGGACT
TCTCCACGGTGGTCTCCGAGGAAGATCTGGTCACCAAGCTCAATGCCGGCCTGCAGGCTGCGTCTGAGGA
TCCCAGGCTCCTGGTGCGAGCCATCGGGCCCACAGAAACTCCTTCTTGGCCCGCGCCCGACGCTGCAGCC
GAAGACTCACCAGGGGTGGCCCCAGAGTTGCCTGAGGACGAGGCTATCCGGCAAGCACTGGTGGACTCTG
TGTTCCAGGTGTCGGTGCTGCCAGGCAATGTGGGCTACCTGCGCTTCGATAGTTTTGCTGACGCCTCCGT
CCTGGGTGTGTTGGCCCCATATGTCCTGCGCCAGGTGTGGGAGCCGCTACAGGACACGGAGCACCTCATC
ATGGACCTGCGCCACAACCCTGGAGGGCCATCCTCTGCTGTGCCCCTGCTCCTGTCCTACTTCCAGGGCC
CTGAGGCCGGCCCCGTGCACCTCTTCACCACCTATGATCGCCGCACCAACATCACGCAGGAGCACTTCAG
CCACATGGAGCTCCCGGGCCCACGCTACAGCACCCAACGTGGGGTGTATCTGCTCACCAGCCACCGCACC
GCCACGGCCGCGGAGGAGTTCGCCTTCCTTATGCAGTCGCTGGGCTGGGCCACACTGGTAGGTGAGATCA
CCGCGGGCAACCTGCTGCACACCCGCACGGTGCCGCTGCTGGACACACCCGAAGGCAGCCTCGCGCTCAC
CGTGCCGGTCCTCACCTTCATCGACAATCACGGCGAGGCCTGGCTGGGTGGTGGAGTGGTGCCCGATGCC
ATCGTGCTGGCCGAGGAGGCCCTGGACAAAGCCCAGGAAGTGCTGGAGTTCCACCAAAGCCTGGGGGCCT
TGGTGGAGGGCACAGGGCACCTGCTGGAGGCCCACTATGCTCGGCCAGAGGTCGTGGGGCAGACCAGTGC
CCTCCTGCGGGCCAAGCTGGCCCAGGGCGCCTACCGCACAGCTGTGGACTTGGAGTCTCTGGCCTCTCAG
CTCACAGCAGACCTCCAGGAGGTGTCTGGGGACCACCGCTTGCTAGTGTTCCACAGCCCTGGCGAGCTGG
TGGTAGAGGAAGCACCCCCACCACCCCCTGCTGTCCCCTCTCCAGAGGAGCTCACCTACCTTATTGAGGC
CCTGTTCAAGACAGAGGTGCTGCCCGGCCAGCTGGGCTACCTGCGTTTTGACGCCATGGCTGAACTGGAG
ACAGTGAAGGCCGTGGGGCCACAGCTGGTGCGGCTGGTATGGCAACAGCTGGTGGACACGGCTGCGCTGG
TGATCGACCTGCGCTACAACCCTGGCAGCTACTCCACGGCCATCCCGCTGCTCTGCTCCTACTTCTTTGA
GGCAGAGCCCCGCCAGCACCTGTATTCTGTCTTTGACAGGGCCACCTCAAAAGTCACGGAGGTGTGGACC
TTGCCCCAGGTCGCCGGCCAGCGCTACGGCTCACACAAGGACCTCTACATCCTGATGAGCCACACCAGTG
GCTCTGCGGCCGAGGCCTTTGCACACACCATGCAGGACCTGCAGCGGGCCACGGTCATTGGGGAGCCCAC
GGCCGGAGGCGCACTCTCTGTGGGCATCTACCAGGTGGGCAGCAGCCCCTTATATGCATCCATGCCCACC
CAGATGGCCATGAGTGCCACCACAGGCAAGGCCTGGGACCTGGCTGGTGTGGAGCCCGACATCACTGTGC
CCATGAGCGAAGCCCTTTCCATAGCCCAGGACATAGTGGCTCTGCGTGCCAAGGTGCCCACGGTGCTGCA
GACGGCCGGGAAGCTGGTGGCTGATAACTATGCCTCTGCCGAGCTGGGGGCCAAGATGGCCACCAAACTG
AGCGGTCTGCAGAGCCGCTACTCCAGGGTGACCTCAGAAGTGGCCCTAGCCGAGATCCTGGGGGCTGACC
TGCAGATGCTCTCCGGAGACCCACACCTGAAGGCAGCCCATATCCCTGAGAATGCCAAGGACCGCATTCC
TGGAATTGTGCCCATGCAGGTGAGACCCAAGAGAGACCTGGCTGAACCCAGTCCCGGGAGTGAGTTGACC
CATTGTCCGCACATGCAGGGCTCTGTGCACAGTGCGTGACAATGGCTTTTAGATTTGTTCTCACGTTTAA
GTTTTGACCGGTCAAGTCCTTTCCTCTTTCTCAACCTGTTCCATCCACTCTCTGTGACCCTGGGGTTGCT
GAACACCTCTGTAGAACATTCATATTAGGTTGGTGCAAAAGTACTTTCAATGGCAAAACCCGCAATTACT
TTTGCACCCACCTCACAGGAAGCCAGTTTGAAAGCCAACCAATACTCACAGGAAGCCAGTTCGGAAGCTC
CTGGGATAGAAGGCATTTCAGCCTTGGCTGGGTGGAAGGTGAGTGTTGGCAGGGCTTCTCATTGTCAGTG
CTAGGGAAGAGGCCAACACCTGTCAGAGGTGGCCAATGGACTTCACCAAGTGCCCCACGCTGGCCGAGAG
CTCCACCTAGGCAGCACTCACACCTCCACACTGTTCTACCTGTGGTCTGCTGCATCGTCACAATTGGGCA
GGGCAGCATTTGCCATGGGATCCCTTGCAAGGAGGGTCTGAGACCAGGGCTTGGGTGCAGGCGCTTTGTC
TGGGAGGCGGTTACTGAAGCAGGCATGAAGGAGGGAGCAGGGAGAGTGGGTTGGGAAGCTGACAGGCAGG
TGCCTCAAAGCTGTTCTGCTGAAGCCAGGACCCTGACGAGTGCAGGGATGCTCCCAGGCATAGCCCTCTG
CAGGCAGGGCCCAGTGGTTCCTGTCCCGCATTGGCCAAGAGTTGCCCTGAGACATGCCTCAGGGTGGGGC
AGGCTCCCTCTTCTTGGAGAAGGCCTGAGCTACGGGTGGAAAGGCAGGGCTGTGCTATAGGAGAGCCTGT
CAGTGGGGTCGGGTGCAGCTGAAAGCAGAGGGGGCTGAGAGTGCCAAAAGCATCTACTACAGAATTGTTA
TCCCCATTTTCCGCAACTGAGGCCCGGAGAGGAGCAGAGGGGAGTGGCCTGAGGCCAGAGAGCTGTGACT
GAGGGCAGGGCAGGGCCTGGAGGGCAGTGTCTCTGTCAATGAAGTCTCCTTGCCTGTCAATCTCACCAAG
ACCTGCCTCCCTCCAGCAGCCTTAGAGAGGGAGGAGGAGGTGCATCCACGTGCGAGTAGCCTGTGCTAGG
CTTGCAGAATCCCCAGTTTCCAAATCAACATCTCCTTCCTTTCCAGTATAGCCAAGGTTCACGATTTGGA
GTCAGATGTGGATTCAGATTCTGGCTCCACCACTTACTGACTGTGTGACCTGAGACTAGTTACTTAATCT
CTCTGTGCTTCAGTTTTTCCATGGAAAAGATGGGGATCGTGTTATCTCCTGTACAGGTGGCTGTGAGGAT
GATGATAAGCTCTACAAAGTGCTTAGTACCGGGCCAGGTGCCTGGTAAAGGTAACTAACATCTTCCAATC
CTGCCCCAGTGGAGCAGCTTAGAGACATAGGAAGTATCTGGTAAGGTTGGAGAGGTCAGAGGGGAGTCCA
TTCCTGGGCCTTCTAGCTCAGGACACCAGGGCATGTGGGTGGCAGACAGGAGCATCCTCTGCAAGGAGGC
TGCCCATAGATCACACATGTCCCAGTGGCATGTCACATCCAGACATGCCACTGGGAAAGTCCCTGGTGTC
TACTAATTCCTTCAGAAATGTTAGTTCCTGTCCCATGCCCTTAATATTTCCCATGGCGCCTGCTTTCCTG
GGCTCTAAAACTGGCTGCTCCTCCTGACACTGAGTAGGACCTCCAACTCTTACAGATCCCTTCCCCTGAA
GTATTTGAAGAGCTGATCAAGTTTTCCTTCCACACTAACGTGCTTGAGGACAACATTGGCTACTTGAGGT
TTGACATGTTTGGGGACGGTGAGCTGCTCACCCAGGTCTCCAGGCTGCTGGTGGAGCACATCTGGAAGAA
GATCATGCACACGGATGCCATGATCATCGACATGAGGTCAGTGGCCAGGGGTCAGTGCTTCCTAGCCAGG
ACGCAGGGCTGCCAGGGGACAGTCAAAGCTATGGGCCACAGCAGGGAAGAAAAGGAACCCTGTGACACAG
CAGAGGACCTGAGGGGGGCCAGGCCTCCTGCCTATCAGGGCTTCGGCCAGCTAGCCCAGCAGATCTGCTG
TCATTGCAGGTGGGGCCCAGCACTGGTAGTTTTTGCAAGCTTCTCCAGTGATTCCAATGTGCATTCCAGA
TTGAGAATTACCCCAGATTTGCCTGGTCATAGGATTCAGTGGGGAGGAGAGGAAGGAGATGTTAAAAACA
CTGATTCCTGGGCCCCACTCCCCTCTTACTGACTCAGAAGCTCCAGGGGACAGGCCCGATAATCTCTATT
TGACAGGCATCCCAGGTGATTCTGATGGTCAGTGGTGTGTGAGACAGCCAGGCCCCCCACCTGGGAGTGT
GCCTCACATCATACAAAATCAACACATGACAACCCTGGTCATATGAATCGTACAGGCAGAATTTGGAAAT
CACACAGGGAAAATTTAGAAGTTAATCACTATTGTTAACAAAAGAATTCTTTGCATCACCAAATGATTGT
CAGAAGGATGTCTTCAGCTAGCCACCTCCCCTCTGTTTCTGTAAAAATGTGCCTCATATGTCATGAGTTT
ACCTCATGGACCAGGGGTAGGAGGTGGATGAGTACCCTCAGGCAGTGGCCAGACCTGGCATCCCATGACT
CTGGGGTCCATTGGTGGACATGCCCCAGCACCCTCCCTGGGCAGGTTGCCTTCCTCAGACGGGACCCTTC
CATGCTCCCGTGTTGTCTGAAAGAAGTGGCAGGGGGTGGCAGACCAGAAGCATTCACCCAGCTCCAGTTC
TCTAGCCCTCAGCGCTCACTCACATGGTTCTTAGTGGTCACTAGGTGGCTCTCGGTCCTGCACCCACTGC
TTCTCCTCCCTGGGAGATAAAACATTAGCCCTGGCTCCAGTTCTGTGTGTGTTCACAGCCTGAGCTTGAG
GCTCCTGGGGTCTCTCTGATCATTTTATTCTTTAGAAGTTCTGTTGAGCACCCAAATGACACTCATGCTA
AGTCTCTTTCTTCTGAATATGCCATTTACACTTTTTAAAGAGGAGATGGCCCCAGCCTGCAAGTGCACTT
TGCTTAAAGACCCTCCCACCCCTGAGGTTTGTTTGGAGGTTCAGACACTGACATCACAGGCCCCGAACCC
AGCCAGGCCATCCCAGGCCATCAGTTGGACGAGGCTCCTTAACACATCACTAGCCCCAGTGGGGAGACAG
GGGCCCAACGAGGTCACACAGTGGGACAAATCTAAATGGCCTGGGAGAAATACAGGCTCCCCTGCTCCCA
ATGCAGCTCCACAAGCCTGAATATTTCAATACACTAAGTGCCCTGTTAAGACACCTGAACTAAGACAGCT
GGTAGGTGTCATAAGATTGTCACAGAATGCAACGGGAAAAACAATGTTTCCCAAAATGTGTTCCACTCAT
AGGAAGATATGGGTGCAGGGGAGCAGTCCATGGTCAATAAATGGGGGAAATTTATCAACAAGTTTCTGAC
TGCAGGACTTGTCAGGGCCTTTAATATATTAACATGTATTAATTACATAGCAGAAGGAAAGGATAACATA
TTTGATCACTAAGTTTCTTGTTCTAAAGAGACTAGTACTCTTGGAAATACTCTGGAAAATGCCAACCCAT
GGAATTCTAAAGGAGGAAGAGGCACTAGACTGAGGCTGCCAAGAATTAGAACCCTCCATGGGACAAAGAT
CCTGGCCTCCCCGAGGGGCACACAGGGCCTCACTGTGAGCTCAGCCCCTGAACAGGCTCTGCTTCCCATC
CTTCAGGTTCAACATCGGTGGCCCCACATCCTCCATTCCCATCTTGTGCTCCTACTTCTTTGATGAAGGC
CCTCCAGTTCTGCTGGACAAGATCTACAGCCGGCCTGATGACTCTGTCAGTGAACTCTGGACACACGCCC
AGGTTGTAGGTACGTGGAGAAGCTTTCTCCTTTCTGCTGTCATTCTAGAAGCTTCTGGGAAACCAGGGAA
AGACAGCTTGGGTGTAGGTAAAAGTCATAGTAACCAGAATGTAAGGCCCTGTCCTAGTCCAGGCACTAGA
TGTGCATGATCTCGAATCCCTGAAAAGCATGTATCACTATGCCCGTTTTCTAGAGGAAAAAAAAGGGGGT
GTTGACTAGGTCAAATATCTTTTCTAGGGTCATGCAGCTAATAAGTGAAACCCAAAATGTGAATATTAGT
TTGTCTAATACCAAAATTTCCCCCAGGCTTAGCACCATAATCACCAGCCTGCAGGACAAATGCAGAATTT
GAAGGATTCTCCCCGCCCCTCACCAACCCCAGTGGGCATTGCCAGTGCTCACAGTACTTGAGCTCTCAAG
CCACAGTGCCACAAACTTGCCTGGAAAGGTCATGATGCTGATCGGGCTTCTGTTCCCCGCCCTGGGCCCA
GAGCAGTGGCTATAGGAGCAAAGGCAGGCCCTGAGCTTTACAGAACCATAACTCTCAAAGCCCCATTCCA
GGGTGGATGGCCTCCATCTATCTTCCCTGCCCAGTGTGTAAGACCAAGGAACTTGTGCTCCTACCCAACA
AGAAAGGACTGGAGAGACCGATGGGGGTGTGCCTGTGACCAGAGAAACACCCCACCATTTTCATGTCCAT
GCTTCTGTAATACACAGGCATTTTGCTGTAGCTCCTAGGACATACGTTCAATAATATTACAAGTGTAAAT
GCAAATCAGAACCAGGTGAATTCTAAATTCAAATAGATGTTCAAGACTGGAAGTTAAAGATAGACTCAAT
TCTGCAGATAATGAGGCCCCAAAACCGCAAGGTCCAATATGGGAGCCACAAGCCACCTGCGGCCACCAAG
CATTTGAAATGTGGCTCTCCCAAGTTGAGATGTGCTGGAAGTGTGATGTGCTGGAAGTGTAATGTGCATA
CCAGATTTTGAAGACATTATGAAAAGAAAACCTCATTAATAATTTTATTTGATTACATTTTGAAAAGAAT
GTATTTTGGATACATTGGCTTAAACAAAACATGATTAAAATTAACACCATGGGTTTCTTTTTGCTTGCTT
AACATGGCTACTAGGGAACCTAAAATGACATCTATGGCCAGCATTCTGGCTCACGTTGCATTCCTGTTGG
ACAGTGCTGTCCTGGAGAGTTGTTCTTATACATCACAAATTGGGCTTTTCTGAGTCCAAAGTGAAAAGGA
AGTCAGGTCGGTTTAGGTGTTCTCATTATTCATGAAGAGAGAGGATGCTCCTTTCTCAGGAGAGTCAAGC
CTTTCCTATCACTTGGCATAAAAAGGCCTCGTTGGGAGTTGTCAAGCACTGAAATCCTCGTGATTGGGCA
TGCATTCTTGTCCCCATTTTACGGATGCAGAAATCAAGGCTCAGAGAAGTCAAGTGGCTCACAAGTGGAC
ACAAGGACACAGACCTAAACCCCCGGGCCTCCTCCATCACTGCAGGCCCAGGCAGGATAGAGAAGACAGG
TGCTCCAGGGTCCTGACATGACCCCCATCCTGAAGGGCCTTATGTCTTCCAGGTGAACGCTATGGCTCCA
AGAAGAGCATGGTCATTCTGACCAGCAGTGTGACGGCCGGCACCGCGGAGGAGTTCACCTATATCATGAA
GAGGCTGGGCCGGGCCCTGGTCATTGGGGAGGTGACCAGTGGGGGCTGCCAGCCACCACAGACCTACCAC
GTGGATGACACCAACCTCTACCTCACTATCCCCACGGCCCGTTCTGTGGGGGCCTCGGATGGCAGCTCCT
GGGAAGGGGTGGGGGTGACACCCCATGTGGTTGTCCCTGCAGAAGAGGCTCTCGCCAGGGCCAAGGAGAT
GCTCCAGCACAACCAGCTGAGGGTGAAGCGGAGCCCAGGCCTGCAGGACCACCTGTAGGGAAGGGCCCCA
TAGGCAGAGCCCCAGGGCAGACAGAACCTCTGGGACACACACCAAGGGCACTCCTGCAGGTGGCCCGGCC
TGAGGTTCCCAGGAGCAGCAAAGGGGCCTGCTGAGCTCTGGTTAGGTTACAGCTGGAGGTGTGTATATAT
ACACACACACACATGTATATACACATATATATGTGTATGTATATATATGTATATATATATGGCTTTCCAA
TAACCACCTAAATTTTAACAAAGGTTCCTTCTAAGTGGTAGAACTTGGGGTGGTATTTTTACCTTCCTTC
TTCATACTTTGCTCTTTTTCTTAAATACTCATTAATGTGCATATATCATTATTTTCAGATGCAGCTATCA
TTATTCCAAAATACAAAATAAAGAAGATAAAATAAATTATATACCCGAGCCATTA

</dna_sequence>
        <protein_sequence>>NP_002891.1 retinol-binding protein 3 precursor [Homo sapiens]
MMREWVLLMSVLLCGLAGPTHLFQPSLVLDMAKVLLDNYCFPENLLGMQEAIQQAIKSHEILSISDPQTL
ASVLTAGVQSSLNDPRLVISYEPSTPEPPPQVPALTSLSEEELLAWLQRGLRHEVLEGNVGYLRVDSVPG
QEVLSMMGEFLVAHVWGNLMGTSALVLDLRHCTGGQVSGIPYIISYLHPGNTILHVDTIYNRPSNTTTEI
WTLPQVLGERYGADKDVVVLTSSQTRGVAEDIAHILKQMRRAIVVGERTGGGALDLRKLRIGESDFFFTV
PVSRSLGPLGGGSQTWEGSGVLPCVGTPAEQALEKALAILTLRSALPGVVHCLQEVLKDYYTLVDRVPTL
LQHLASMDFSTVVSEEDLVTKLNAGLQAASEDPRLLVRAIGPTETPSWPAPDAAAEDSPGVAPELPEDEA
IRQALVDSVFQVSVLPGNVGYLRFDSFADASVLGVLAPYVLRQVWEPLQDTEHLIMDLRHNPGGPSSAVP
LLLSYFQGPEAGPVHLFTTYDRRTNITQEHFSHMELPGPRYSTQRGVYLLTSHRTATAAEEFAFLMQSLG
WATLVGEITAGNLLHTRTVPLLDTPEGSLALTVPVLTFIDNHGEAWLGGGVVPDAIVLAEEALDKAQEVL
EFHQSLGALVEGTGHLLEAHYARPEVVGQTSALLRAKLAQGAYRTAVDLESLASQLTADLQEVSGDHRLL
VFHSPGELVVEEAPPPPPAVPSPEELTYLIEALFKTEVLPGQLGYLRFDAMAELETVKAVGPQLVRLVWQ
QLVDTAALVIDLRYNPGSYSTAIPLLCSYFFEAEPRQHLYSVFDRATSKVTEVWTLPQVAGQRYGSHKDL
YILMSHTSGSAAEAFAHTMQDLQRATVIGEPTAGGALSVGIYQVGSSPLYASMPTQMAMSATTGKAWDLA
GVEPDITVPMSEALSIAQDIVALRAKVPTVLQTAGKLVADNYASAELGAKMATKLSGLQSRYSRVTSEVA
LAEILGADLQMLSGDPHLKAAHIPENAKDRIPGIVPMQIPSPEVFEELIKFSFHTNVLEDNIGYLRFDMF
GDGELLTQVSRLLVEHIWKKIMHTDAMIIDMRFNIGGPTSSIPILCSYFFDEGPPVLLDKIYSRPDDSVS
ELWTHAQVVGERYGSKKSMVILTSSVTAGTAEEFTYIMKRLGRALVIGEVTSGGCQPPQTYHVDDTNLYL
TIPTARSVGASDGSSWEGVGVTPHVVVPAEEALARAKEMLQHNQLRVKRSPGLQDHL

</protein_sequence>
        <phi_function>Protective antigen</phi_function>
        <phi_annotation></phi_annotation>
        <phi_function2></phi_function2>
        <phi_annotation2></phi_annotation2>
    </gene>
	<reference reference_id="reference2729">
		<reference_name>Commodaro et al., 2010</reference_name>
		<reference_type>journal</reference_type>
		<authors>Commodaro AG, Peron JP, Lopes CT, Arslanian C, Belfort R Jr, Rizzo LV, Bueno V</authors>
		<title>Evaluation of experimental autoimmune uveitis in mice treated with FTY720</title>
		<year>2010</year>
		<volume>51</volume>
		<issue>5</issue>
		<pages>2568-2574</pages>
		<journal_book_name>Investigative ophthalmology & visual science</journal_book_name>
		<publisher></publisher>
		<publisher_location></publisher_location>
		<book_editors></book_editors>
		<isbn></isbn>
		<university></university>
		<university_location></university_location>
		<degree></degree>
		<url></url>
		<file_name></file_name>
	</reference>
	<reference reference_id="reference2314">
		<reference_name>Silver et al., 2007</reference_name>
		<reference_type>journal</reference_type>
		<authors>Silver PB, Agarwal RK, Su SB, Suffia I, Grajewski RS, Luger D, Chan CC, Mahdi RM, Nickerson JM, Caspi RR</authors>
		<title>Hydrodynamic vaccination with DNA encoding an immunologically privileged retinal antigen protects from autoimmunity through induction of regulatory T cells</title>
		<year>2007</year>
		<volume>179</volume>
		<issue>8</issue>
		<pages>5146-5158</pages>
		<journal_book_name>Journal of immunology (Baltimore, Md. : 1950)</journal_book_name>
		<publisher></publisher>
		<publisher_location></publisher_location>
		<book_editors></book_editors>
		<isbn></isbn>
		<university></university>
		<university_location></university_location>
		<degree></degree>
		<url></url>
		<file_name></file_name>
	</reference>
</VIOLIN>


