Summary | |
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Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Basic function annotation. > Subcellular Location, Domain and Function > Gene Ontology > KEGG and Reactome Pathway |
Subcellular Location | Golgi apparatus, trans-Golgi network membrane Multi-pass membrane protein Note=Efficient exit from the endoplasmic reticulum does not require TMEM30A, nor TMEM30B. |
Domain |
PF16212 Phospholipid-translocating P-type ATPase C-terminal PF16209 Phospholipid-translocating ATPase N-terminal |
Function |
- |
Biological Process |
GO:0006869 lipid transport GO:0006890 retrograde vesicle-mediated transport, Golgi to ER GO:0010876 lipid localization GO:0015748 organophosphate ester transport GO:0015914 phospholipid transport GO:0034067 protein localization to Golgi apparatus GO:0034204 lipid translocation GO:0045332 phospholipid translocation GO:0048193 Golgi vesicle transport GO:0072600 establishment of protein localization to Golgi GO:0097035 regulation of membrane lipid distribution |
Molecular Function |
GO:0000287 magnesium ion binding GO:0004012 phospholipid-translocating ATPase activity GO:0005319 lipid transporter activity GO:0005548 phospholipid transporter activity GO:0016887 ATPase activity GO:0042623 ATPase activity, coupled GO:0043492 ATPase activity, coupled to movement of substances |
Cellular Component |
GO:0005802 trans-Golgi network GO:0031984 organelle subcompartment GO:0098791 Golgi subcompartment |
KEGG | - |
Reactome |
R-HSA-983712: Ion channel transport R-HSA-936837: Ion transport by P-type ATPases R-HSA-382551: Transmembrane transport of small molecules |
Summary | |
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Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content | Literatures that report relations between ATP9B and anti-tumor immunity. The specific mechanism were also collected if the literature reports that a gene specifically promotes or inhibits the infiltration or function of T/NK cells. |
There is no record. |
Summary | |
---|---|
Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content | High-throughput screening data (e.g. CRISPR-Cas9, shRNA and RNAi) for T cell-mediated killing. Genetic screen techniques can identify mechanisms of tumor cell resistance (e.g., PTPN2) and sensitivity (e.g., APLNR) to killing by cytotoxic T cells, the central effectors of anti-tumor immunity. After comprehensively searching, eight groups of screening data sets were collected in the current database. In this tab, users can check whether their selected genes cause resistance or increase sensitivity to T cell-mediated killing in various data sets. |
> High-throughput Screening
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Statistical results of ATP9B in screening data sets for detecting immune reponses.
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Summary | |
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Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Transcriptomic and genomic profiling of pre-treated tumor biopsies from responders and non-responders to immunotherapy. These data were used to identify signatures and mechanisms of response to checkpoint blockade (e.g., anti-PDL1 and anti-PD1). One example is that mutations in the gene PBRM1 benefit clinical survival of patients with clear cell renal cell carcinoma. After comprehensively searching, we collected 5 and 6 of transcriptomic and genomic data sets, respectively. In this tab, users can check whether their selected genes have significant difference of expression or mutation between responders and non-responders in various data sets. > Expression difference between responders and non-responders > Mutation difference between responders and non-responders |
Points in the above scatter plot represent the expression difference of ATP9B in various data sets.
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Points in the above scatter plot represent the mutation difference of ATP9B in various data sets.
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Summary | |
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Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Relations between abundance of tumor-infiltrating lymphocytes (TILs) and expression, copy number, methylation, or mutation of ATP9B. The immune-related signatures of 28 TIL types from Charoentong's study, which can be viewed in the download page. For each cancer type, the relative abundance of TILs were inferred by using gene set variation analysis (GSVA) based on gene expression profile. In this tab, users can examine which kinds of TILs might be regulated by the current gene. |
Summary | |
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Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Relations between three kinds of immunomodulators and expression, copy number, methylation, or mutation of ATP9B. These immunomo-dulators were collected from Charoentong's study. In this tab, users can examine which immunomodulators might be regulated by ATP9B. > Immunoinhibitor > Immunostimulator > MHC molecule |
Summary | |
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Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Relations between chemokines (or receptors) and expression, copy number, methylation, or mutation of ATP9B. In this tab, users can examine which chemokines (or receptors) might be regulated by the current gene. > Chemokine > Receptor |
Summary | |
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Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Distribution of ATP9B expression across immune and molecular subtypes. > Immune subtype > Molecular subtype |
Summary | |
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Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content |
Associations between ATP9B and clinical features. > Overall survival analysis > Cancer stage > Tumor grade |
Summary | |
---|---|
Symbol | ATP9B |
Name | ATPase, class II, type 9B |
Aliases | ATPIIB; ATPASEP; HUSSY-20; NEO1L; hMMR1; macrophage MHC receptor 1; ATPase class II type 9B; Probable phosph ...... |
Chromosomal Location | 18q23 |
External Links | HGNC, NCBI, Ensembl, Uniprot, GeneCards |
Content | Drugs targeting ATP9B collected from DrugBank database. |
There is no record. |