Brain Transcriptome Database (BrainTx)
トランスクリプトームデータ
CD08054
http://metadb.riken.jp/db/BrainTx/TranscriptomeData/CD08054
CD08054(トランスクリプトームデータ)
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CD08054
トランスクリプトームデータ
遺伝子シンボル
http://metadb.riken.jp/db/BrainTx/geneSymbol
Bcl2l12
遺伝子名
http://metadb.riken.jp/db/BrainTx/geneName
BCL2-like 12 (proline rich)
別名
http://metadb.riken.jp/db/BrainTx/alt_name
BCL2-like 12 (proline rich)
別名略称
http://metadb.riken.jp/db/BrainTx/alt_symbol
Bcl2-L12
2810475P17Rik
5430429M05Rik
Bcl-L12
NCBI遺伝子
http://metadb.riken.jp/db/BrainTx/NCBIGene
https://www.ncbi.nlm.nih.gov/gene/75736
MGI遺伝子
http://metadb.riken.jp/db/BrainTx/mgiGene
BCL2-like 12 (proline rich)
http://metadb.riken.jp/db/mgi_rdf/MGI:1922986
BrainTx遺伝子
http://metadb.riken.jp/db/BrainTx/brainTxGene
脳発現画像
http://metadb.riken.jp/db/BrainTx/brainExpressionImage
時系列発現 (小脳)
http://metadb.riken.jp/db/BrainTx/brainExpression
脳発現特異性/組織別発現
http://metadb.riken.jp/db/BrainTx/brainSpecificity
BrainTx遺伝子カテゴリー
http://metadb.riken.jp/db/BrainTx/brainTxGeneCategory
NCBI Accession Number
http://metadb.riken.jp/db/BrainTx/NCBIAccessionNumber
https://www.ncbi.nlm.nih.gov/nuccore/NM_029410
Ensembl 遺伝子
http://metadb.riken.jp/db/BrainTx/ensemblGene
http://asia.ensembl.org/Mus_musculus/Gene/Summary?g=ENSMUSG00000003190
UniGene 遺伝子
http://metadb.riken.jp/db/BrainTx/uniGene
https://www.ncbi.nlm.nih.gov/unigene/?term=Mm.261006
OMIM ID
http://metadb.riken.jp/db/BrainTx/omim
https://www.omim.org/entry/603434?search=603434&highlight=610837
PubMed ID (PMID)
http://rdf.ncbi.nlm.nih.gov/pubmed/
Ryan M. O'Connell, et.al., Type I interferon production enhances susceptibility to Listeria monocytogenes infection., The Journal of experimental medicine, 2004, 200
http://rdf.ncbi.nlm.nih.gov/pubmed/15302901
Manisha. Yadav, et.al., Inhibition of TIR domain signaling by TcpC: MyD88-dependent and independent effects on Escherichia coli virulence., PLoS pathogens, 2010, 6
http://rdf.ncbi.nlm.nih.gov/pubmed/20886104
http://rdf.ncbi.nlm.nih.gov/pubmed/20947170
Hans. Fischer, et.al., Pathogen specific, IRF3-dependent signaling and innate resistance to human kidney infection., PLoS pathogens, 2010, 6
http://rdf.ncbi.nlm.nih.gov/pubmed/20886096
John C. Reed, et.al., Comparative analysis of apoptosis and inflammation genes of mice and humans., Genome research, 2003, 13
http://rdf.ncbi.nlm.nih.gov/pubmed/12819136
Kenya. Honda, et.al., IRF-7 is the master regulator of type-I interferon-dependent immune responses., Nature, 2005, 434
http://rdf.ncbi.nlm.nih.gov/pubmed/15800576
Graciana. Diez-Roux, et.al., A high-resolution anatomical atlas of the transcriptome in the mouse embryo., PLoS biology, 2011, 9
http://rdf.ncbi.nlm.nih.gov/pubmed/21267068
M. Sato, et.al., Distinct and essential roles of transcription factors IRF-3 and IRF-7 in response to viruses for IFN-alpha/beta gene induction., Immunity, 2000, 13
http://rdf.ncbi.nlm.nih.gov/pubmed/11070172
Daniel R. Beisner, et.al., Cutting edge: innate immunity conferred by B cells is regulated by caspase-8., Journal of immunology (Baltimore, Md. : 1950), 2005, 175
http://rdf.ncbi.nlm.nih.gov/pubmed/16148088
Leonie. Unterholzner, et.al., IFI16 is an innate immune sensor for intracellular DNA., Nature immunology, 2010, 11
http://rdf.ncbi.nlm.nih.gov/pubmed/20890285
Gene Ontology
http://metadb.riken.jp/db/BrainTx/golink
apoptotic process
http://purl.obolibrary.org/obo/GO_0006915
regulation of apoptotic process
http://purl.obolibrary.org/obo/GO_0042981
InterPro ID
http://metadb.riken.jp/db/BrainTx/interPro
KEGG Pathway ID
http://metadb.riken.jp/db/BrainTx/keggPathwayID
KEGG Pathway 名称
http://metadb.riken.jp/db/BrainTx/keggPathwayName
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