COL4A3BP
Shelters ceramides and diacylglycerol lipids inside its START domain and mediates the intracellular trafficking of ceramides and diacylglycerol lipids in a non-vesicular manner. Widely expressed. 3 alternatively spliced human isoforms have been reported. Note: This description may include information from UniProtKB.
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Protein type: ATYPICAL group; COL4A3BP family; EC 2.7.11.9; Kinase, protein; Lipid-binding; Protein kinase, Ser/Thr (non-receptor); Protein kinase, atypical |
Chromosomal Location of human Ortholog: 5q13.3 |
Cellular Component:
cytosol; endoplasmic reticulum membrane; Golgi apparatus; mitochondrion; nucleoplasm; perinuclear region of cytoplasm
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Molecular Function:
ceramide 1-phosphate binding; ceramide 1-phosphate transfer activity; ceramide binding; ceramide transfer activity; kinase activity; protein binding
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Biological Process:
cell morphogenesis; cell population proliferation; ceramide 1-phosphate transport; ceramide metabolic process; ceramide transport; endoplasmic reticulum organization; ER to Golgi ceramide transport; heart morphogenesis; immune response; in utero embryonic development; intermembrane lipid transfer; intermembrane sphingolipid transfer; lipid homeostasis; mitochondrion morphogenesis; muscle contraction; response to endoplasmic reticulum stress; signal transduction
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Disease: Mental Retardation, Autosomal Dominant 34
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Reference #:
Q9Y5P4
(UniProtKB)
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Alt. Names/Synonyms: C43BP; Ceramide transfer protein; ceramide transporter; ceramide transporter 1; CERT; CERT1; CERTL; COL4A3BP; collagen type IV alpha 3 binding protein; Collagen type IV alpha-3-binding protein; collagen, type IV, alpha 3 (Goodpasture antigen) binding protein; FLJ20597; Goodpasture antigen-binding protein; GPBP; hCERT; lipid-transfer protein CERTL; MRD34; StAR-related lipid transfer (START) domain containing 11; StAR-related lipid transfer protein 11; STARD11; START domain containing 11; START domain-containing protein 11
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Gene Symbols: CERT1
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Molecular weight:
70,835 Da
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Basal Isoelectric point:
5.29
Predict pI for various phosphorylation states
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