Transmembrane protein 100
mammalian protein found in Mus musculus
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Transmembrane protein 100
Summary
Transmembrane protein 100 is a protein[1].
Key Facts
- Transmembrane protein 100's instance of is recorded as protein[2].
- Transmembrane protein 100's UniProt protein ID is recorded as Q9CQG9[3].
- Transmembrane protein 100's part of is recorded as Transmembrane protein 100[4].
- Transmembrane protein 100's part of is recorded as membrane protein[5].
- Transmembrane protein 100's RefSeq protein ID is recorded as NP_080709[6].
- Transmembrane protein 100's RefSeq protein ID is recorded as XP_006534093[7].
- Transmembrane protein 100's RefSeq protein ID is recorded as XP_006534094[8].
- Transmembrane protein 100's RefSeq protein ID is recorded as XP_036012816[9].
- Transmembrane protein 100's molecular function is recorded as protein binding[10].
- Transmembrane protein 100's cell component is recorded as cytoplasm[11].
- Transmembrane protein 100's cell component is recorded as integral component of membrane[12].
- Transmembrane protein 100's cell component is recorded as perikaryon[13].
- Transmembrane protein 100's cell component is recorded as membrane[14].
- Transmembrane protein 100's cell component is recorded as plasma membrane[15].
- Transmembrane protein 100's cell component is recorded as endoplasmic reticulum[16].
- Transmembrane protein 100's cell component is recorded as perinuclear region of cytoplasm[17].
- Transmembrane protein 100's cell component is recorded as plasma membrane[18].
- Transmembrane protein 100's biological process is recorded as Notch signaling pathway[19].
- Transmembrane protein 100's biological process is recorded as cell differentiation[20].
- Transmembrane protein 100's biological process is recorded as positive regulation of endothelial cell differentiation[21].
- Transmembrane protein 100's biological process is recorded as regulation of sensory perception of pain[22].
- Transmembrane protein 100's biological process is recorded as protein kinase B signaling[23].
- Transmembrane protein 100's biological process is recorded as endocardial cushion development[24].
- Transmembrane protein 100's biological process is recorded as epithelial to mesenchymal transition involved in endocardial cushion formation[25].
- Transmembrane protein 100's biological process is recorded as cellular response to BMP stimulus[26].