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视网膜分离视杆外段中GTP和ATP介导的差异磷酸化作用

Differential phosphorylation by GTP and ATP in isolated rod outer segments of the retina.

作者信息

Chader G J, Fletcher R T, O'Brien P J, Krishna G

出版信息

Biochemistry. 1976 Apr 20;15(8):1615-20. doi: 10.1021/bi00653a004.

Abstract

Isolated bovine rod outer segment protein is phosphorylated with GTP-gamma-32P and ATP-gamma 32P and to a much lesser extent by CTP-gamma-32P and UTP-gamma-32P. Phosphorylation with both GTP (GTP-kinase activity) and ATP (ATP-kinase activity) is markedly stimulated by light; phosphorylation with GTP is lower in dark-adapted and higher in light-adapted rod outer segments than is phosphorylation with ATP. Km values of 20 and 200 muM and Vmax values of 2.1 and 5.9 nmol/(mg min(-1)) were calculated using ATP and GTP, respectively, in light-adapted outer segments. When outer segments are incubated with GTP-gamma-32P under the usual conditions employed in these experiments, no formation of ATP-gamma-32P was detected by the techniques of high-pressure liquid chromatography and thin-layer chromatography. In intact, light-bleached outer segments, GTP appears to specifically phosphorylate rhodopsin. Histone and phosvitin are not phosphorylated to any appreciable extent by GTP. Histone appears to block rhodopsin phosphorylation by GTP while histone and, to some extent, phosvitin, both act as substrates for ATP-kinase activity. Cyclic AMP and other adenine derivates have a marked inhibitory effect on GTP-kinase activity. Phosphate also inhibits GTP-kinase activity but stimulates ATP-kinase activity. Such differences in phosphorylation with GTP and ATP indicate that these activities are either due to separate enzyme systems or, if only one enzyme is involved, the activities are under separate physiological control in the photoreceptor unit.

摘要

分离出的牛视杆细胞外段蛋白可被GTP-γ-32P和ATP-γ-32P磷酸化,而被CTP-γ-32P和UTP-γ-32P磷酸化的程度要小得多。GTP(GTP激酶活性)和ATP(ATP激酶活性)的磷酸化均受到光的显著刺激;在暗适应的视杆细胞外段中,GTP的磷酸化水平低于ATP,而在光适应的视杆细胞外段中,GTP的磷酸化水平高于ATP。在光适应的外段中,分别使用ATP和GTP计算出的Km值为20和200μM,Vmax值分别为2.1和5.9nmol/(mg·min-1)。当在这些实验中常用的条件下将外段与GTP-γ-32P一起孵育时,通过高压液相色谱法和薄层色谱法未检测到ATP-γ-32P的形成。在完整的、光漂白的外段中,GTP似乎特异性地使视紫红质磷酸化。组蛋白和卵黄高磷蛋白在任何可观程度上都不会被GTP磷酸化。组蛋白似乎会阻断GTP对视紫红质的磷酸化作用,而组蛋白以及在一定程度上卵黄高磷蛋白都可作为ATP激酶活性的底物。环磷酸腺苷和其他腺嘌呤衍生物对GTP激酶活性有显著的抑制作用。磷酸盐也会抑制GTP激酶活性,但会刺激ATP激酶活性。GTP和ATP磷酸化的这种差异表明,这些活性要么归因于不同的酶系统,如果只涉及一种酶,那么这些活性在光感受器单元中受到不同的生理控制。

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