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- W1723251195 endingPage "751" @default.
- W1723251195 startingPage "713" @default.
- W1723251195 abstract "This chapter discusses the regulation of Na, K–ATPase by its biosynthesis and turnover. The regulation of alkali cation transport in a cell or tissue is in general brought about by the interaction of two processes: modulation of the number of copies of Na, K–ATPase and modulation of the activity of existing copies by appropriate ligands and substrates. Na, K–ATPase is a very dynamic protein. It is constantly being synthesized and turned over in many tissues and is susceptible to up and down regulation in number of copies in response to a variety of environmental stimuli. In the biosynthesis of this enzyme membrane and secretory proteins are generally believed to be synthesized in the rough endoplasmic reticulum (RER), being cotranslationally inserted partially (membrane proteins) or completely (secretory proteins) into the lumen of the RER. In the chapter, the small hydrophobic signal sequence is removed and common oligosaccharide precursors are transferred to the peptide backbone. RER-derived vesicles containing these proteins are then shuttled to the Golgi apparatus for further processing occurs. The proteins are then sorted via some unknown process and transferred to specific organelles, or in the case of secretory products, exported out of the cell by exocytosis. The translocation and covalent modification of the proteins accounts for a several-hour lag or “transit” time between translation and the arrival at their functional destination." @default.
- W1723251195 created "2016-06-24" @default.
- W1723251195 creator A5042060535 @default.
- W1723251195 creator A5065906622 @default.
- W1723251195 date "1983-01-01" @default.
- W1723251195 modified "2023-09-23" @default.
- W1723251195 title "Regulation of Na,K-ATPase by Its Biosynthesis and Turnover" @default.
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