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The Effect Of Oxidant And The Non-Oxidant Alteration Of Cellular Thiol Concentration On The Formation Of Protein Mixed-Disulfides In Hek 293 Cells, Jasen Lee Gilge, Michael Fisher, Yuh-Cherng Chai
The Effect Of Oxidant And The Non-Oxidant Alteration Of Cellular Thiol Concentration On The Formation Of Protein Mixed-Disulfides In Hek 293 Cells, Jasen Lee Gilge, Michael Fisher, Yuh-Cherng Chai
Yuh-Cherng Chai
Cellular molecules possess various mechanisms in responding to oxidant stress. In terms of protein responses, protein S-glutathionylation is a unique post-translational modification of protein reactive cysteines forming disulfides with glutathione molecules. This modification has been proposed to play roles in antioxidant, regulatory and signaling in cells under oxidant stress. Recently, the increased level of protein S-glutathionylation has been linked with the development of diseases. In this report, specific S-glutathionylated proteins were demonstrated in human embryonic kidney 293 cells treated with two different oxidative reagents: diamide and hydrogen peroxide. Diamide is a chemical oxidizing agent whereas hydrogen peroxide is a physiological …
Regulation Of Cell Growth By Oxidized Ldl., Guy Chisolm, Yuh-Cherng Chai
Regulation Of Cell Growth By Oxidized Ldl., Guy Chisolm, Yuh-Cherng Chai
Yuh-Cherng Chai
The first reports of the influences of oxidized LDL (oxLDL) on cell function pertained to negative effects on cell growth—growth arrest, injury, and toxicity. Since these studies, it has become apparent that sublethal levels of oxLDL cause some, but not all, cells to proliferate. This review highlights the growth-promoting effects of oxLDL rather than its inhibitory or injurious effects. Smooth muscle cells (SMCs) and monocyte-macrophages proliferate after exposure to oxLDL; endothelial cells do not. Scavenger receptors are involved in the proliferative effects on monocyte-macrophages, whereas the effects of oxLDL on SMCs appear to be receptor independent. Lysophosphatidylcholine (lysoPC), and structurally …