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Regulation by light of cyclic nucleotide-dependent protein kinases and their substrates in frog rod outer segments

机译:通过光调节环状核苷酸依赖性蛋白激酶及其在蛙杆外部片段中的底物

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摘要

Cyclic nucleotides (both cAMP and cGMP) stimulate the phosphorylation of several proteins of 65-70, 50-52, 21, 13, and 12 kD in rod outer segments (ROS) of the frog retina. Subcellular fractionation showed that phosphopeptides of 67, 21, 13, and 12 kD were soluble and phosphopeptides of 69, 67, 50-52, and 12 kD were membrane associated at physiological ionic strength. Components I and II, 13 and 12 kD, respectively, are the major cyclic nucleotide-dependent phosphoproteins of ROS and have been reported to be phosphorylated in the dark and dephosphorylated in the light. Under unstimulated conditions, phosphorylated Components I and II were found in the soluble fraction. Cyclic nucleotide stimulation of phosphorylation resulted in increased phospho-Components I and II in the soluble fraction, and phospho- Component II on the membrane. Light had no effect on the phosphorylation level of soluble Components I and II, but it caused a depletion within 1 s of the membrane-bound phospho-Component II. A half- maximal decrease in membrane-bound Component II was seen at 5 x 10(5) rhodopsins bleached per outer segment. The cyclic nucleotide-dependent protein kinase(s) were found primarily in the peripheral membrane fraction of ROS proteins. 8-bromo cyclic AMP was two orders of magnitude more effective than 8-bromo cyclic GMP at stimulating Component I and II phosphorylation. An active peptide of the Walsh inhibitor of cAMP-dependent protein kinase [PKI(5-22)amide] blocked the phosphorylation with an IC50 of 10 nM. Photoaffinity labeling studies with 8-N3-cAMP and 8-N3-cGMP revealed the presence of a 52-kD band specifically labeled with 8-N3-cAMP, but no specific 8-N3-cGMP labeling. These data suggest that cyclic nucleotide-dependent protein phosphorylation in ROS occurs via the activation of a cAMP-dependent protein kinase.
机译:环状核苷酸(cAMP和cGMP)都刺激青蛙视网膜杆外节段(ROS)中65-70、50-52、21、13和12 kD的几种蛋白质的磷酸化。亚细胞分级分离显示67、21、13和12 kD的磷酸肽是可溶的,而69、67、50-52和12 kD的磷酸肽在生理离子强度下是膜结合的。组分I和II,13kD和12kD分别是ROS的主要环状核苷酸依赖性磷酸蛋白,并且据报道在黑暗中被磷酸化并且在光照下被去磷酸化。在未刺激的条件下,可溶级分中发现了磷酸化的组分I和II。环核苷酸刺激磷酸化导致可溶性部分中的磷酸成分I和II以及膜上的磷酸成分II增加。光对可溶性成分I和II的磷酸化水平没有影响,但会在与膜结合的磷酸成分II的1 s内引起消耗。在每个外部节段漂白的视紫红质5 x 10(5)上,可见膜结合的成分II减少了一半。环状核苷酸依赖性蛋白激酶主要在ROS蛋白的外周膜部分中发现。在刺激组分I和II的磷酸化方面,8溴环AMP比8溴环GMP有效两个数量级。 cAMP依赖性蛋白激酶[PKI(5-22)amide]的Walsh抑制剂的活性肽以10 nM的IC50阻断磷酸化。用8-N3-cAMP和8-N3-cGMP进行光亲和性标记研究表明,存在一个用8-N3-cAMP特异性标记的52 kD条带,但没有特定的8-N3-cGMP标记。这些数据表明,ROS中的环状核苷酸依赖性蛋白磷酸化通过cAMP依赖性蛋白激酶的激活而发生。

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