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Effects of protein kinase A phosphorylation on signaling between cardiac troponin I and the N-terminal domain of cardiac troponin C

机译:蛋白激酶A磷酸化对心肌肌钙蛋白I和心肌钙蛋白C N端结构域之间信号传导的影响

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摘要

During beta-adrenergic stimulation of the heart, there is a decrease in myofilament Ca2+ sensitivity mediated by the protein kinase A-(PKA-) induced phosphorylation of troponin I (cTnI). Phosphorylation, which occurs at Ser 23 and Ser 24 in an amino-terminal extension unique to cTnI, decreases the Ca2+ affinity of the amino-terminal regulatory site of cardiac troponin C (cTnC). In view of the antiparallel organization of the cTnI-cTnC complex [Krudy, G. A., Kleerekoper, Q., Guo, X., Howarth, J. W., Solaro, R. J., and Rosevear, P. R. (1994) J. Biol. Chem. 269, 23731-23735], it is not clear how the phosphorylation signal at one end of the complex affects the Ca2+ binding site at the other end. To address this question, we probed the interaction between cTnI and cTnC fragments, cTnC1-89 and cTnC90-162 (recombinant peptides corresponding to the N- and C-domains of cTnC). cTnI-Cys 5 mutant (S5C/C81I/C98S) and cTnC1-89 were fluorescently labeled with IAANS. When cTnI was phosphorylated, the affinity of Ca2+ for the cTnI-cTnC1-89 complex decreased significantly as indicated by a shift in the pCa50 value from 6.65 to 5.25. Upon phosphorylation, the affinity of cTnI for cTnC1-89 decreased by 3.8-fold in the absence of Ca2+ and 1.7-fold in the presence of Ca2+. In contrast to the case with full-length cTnC, neither cTnC1-89 nor cTnC90-162 induced significant structural changes in cTnI-Cys 5 as determined from intersite distance measurements between Cys 5 and Trp 192. Moreover, neither fragment of cTnC could significantly restore Ca2+ regulation of force generation, when exchanged into fiber bundles from which cTnC had been extracted. Our findings indicate that the transduction of PKA-induced phosphorylation signal from cTnI to the regulatory site of cTnC involves a global change in cTnI structure.
机译:在心脏的β-肾上腺素刺激过程中,由蛋白激酶A-(PKA-)诱导的肌钙蛋白I(cTnI)磷酸化介导的肌丝Ca2 +敏感性降低。磷酸化发生在cTnI独有的氨基末端延伸序列中的Ser 23和Ser 24处,可降低心肌肌钙蛋白C(cTnC)氨基末端调节位点的Ca2 +亲和力。鉴于cTnI-cTnC复合物的反平行组织[Krudy,G.A.,Kleerekoper,Q.,Guo,X.,Howarth,J.W.,Solaro,R.J。,和Rosevear,P.R。(1994)J.Biol.Chem。,1994。化学269,23731-23735],尚不清楚复合物一端的磷酸化信号如何影响另一端的Ca2 +结合位点。为了解决这个问题,我们探讨了cTnI和cTnC片段,cTnC1-89和cTnC90-162(对应于cTnC的N和C结构域的重组肽)之间的相互作用。用IAANS荧光标记cTnI-Cys 5突变体(S5C / C81I / C98S)和cTnC1-89。当cTnI磷酸化后,Ca2 +对cTnI-cTnC1-89复合物的亲和力显着下降,这是pCa50值从6.65变为5.25的结果。磷酸化后,在不存在Ca2 +的情况下,cTnI对cTnC1-89的亲和力降低了3.8倍,在存在Ca2 +的情况下降低了1.7倍。与全长cTnC的情况相反,根据Cys 5和Trp 192之间的位点间距离测量结果,cTnC1-89和cTnC90-162均不会引起cTnI-Cys 5的显着结构变化。此外,cTnC的两个片段均无法显着还原当交换成从中提取了cTnC的纤维束时,Ca2 +调节了力的产生。我们的发现表明,PKA诱导的磷酸化信号从cTnI到cTnC调控位点的转导涉及cTnI结构的整体变化。

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