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・ Krapje
・ Krapje, Ljutomer
・ Krapkowice
・ Krapkowice County
・ Kraplewo
・ Krapo Kriyé
・ Krapp
・ Krapp's Last Tape
・ Krapp, ou, La dernière bande
・ Krappa
・ Krapperup Castle
・ Kraptor
・ KRAQ
・ Krar
・ Krarup
KRAS
・ Kras (disambiguation)
・ Kras Stadion
・ Krasa Rossii
・ Krasae Chanawongse
・ Krasae Sin District
・ KrasAir
・ Krasang District
・ Krasanovići
・ Krasar
・ Krasatinka
・ Krasatinka, Krasninsky District, Smolensk Oblast
・ Krasava
・ Krasava Point
・ KrasAvia


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KRAS : ウィキペディア英語版
KRAS

GTPase KRas also known as V-Ki-ras2 Kirsten rat sarcoma viral oncogene homolog and KRAS, is a protein that in humans is encoded by the ''KRAS'' gene.
The protein product of the normal KRAS gene performs an essential function in normal tissue signaling, and the mutation of a KRAS gene is an essential step in the development of many cancers. Like other members of the ras subfamily, the KRAS protein is a GTPase and is an early player in many signal transduction pathways. KRAS is usually tethered to cell membranes because of the presence of an isoprene group on its C-terminus. There are two protein products of the KRAS gene in mammalian cells that result from the use of alternative exon 4 (exon 4A and 4B respectively): K-Ras4A and K-Ras4B, these proteins have different structure in their C-terminal region and utilise different mechanisms to localize to cellular membranes including plasma membrane.
== Function ==

KRAS acts as a molecular on/off switch. Once it is turned on, it recruits and activates proteins necessary for the propagation of growth factor and other receptors' signal such as c-Raf and PI 3-kinase. KRAS upregulates the GLUT1 glucose transporter, thereby contributing to the Warburg effect in cancer cells. KRAS binds to GTP in the active state and possesses an intrinsic enzymatic activity which cleaves the terminal phosphate of the nucleotide converting it to GDP. Upon conversion of GTP to GDP, KRAS is turned off. The rate of conversion is usually slow but can be sped up dramatically by an accessory protein of the GTPase-activating protein (GAP) class, for example RasGAP. In turn KRAS can bind to proteins of the Guanine Nucleotide Exchange Factor (GEF) class, for example SOS1, which forces the release of bound nucleotide (GDP). Subsequently, KRAS binds GTP present in the cytosol and the GEF is released from ras-GTP.
Other members of the Ras family include: HRAS and NRAS. These proteins all are regulated in the same manner and appear to differ largely in their sites of action within the cell.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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