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New Insights Into the Functional Significance of the Acidic Region of the Unique N-Terminal Extension of Cardiac Troponin I

机译:新的见解对心肌肌钙蛋白的独特N-末端延伸的酸性区域的功能意义

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摘要

Previous structural studies indicated a special functional role for an acidic region comprised of residues 1–10 in the unique N-terminal peptide of cardiac troponin I (cTnI). Employing LC-MS/MS, we determined the presence of phosphorylation sites at S5/S6 in cTnI from wild type mouse hearts as well as in hearts of mice chronically expressing active protein kinase C-ε (PKCε) and exhibiting severe dilated cardiomyopathy (DCM). To determine the functional significance of these phosphorylations, we cloned and expressed wild-type cTnI, (Wt), and cTnI variants expressing pseudo-phosphorylation cTnI-(S5D), cTnI(S6D), as well as cTnI(S5A) and cTnI(S6A). We exchanged native Tn of detergent-extracted (skinned) fiber bundles with Tn reconstituted with the variant cTnIs and measured tension and cross-bridge dynamics. Compared to controls, myofilaments controlled by cTnI with pseudo-phosphorylation (S6D) or Ala substitution (S6A) demonstrated a significant depression in maximum tension, ATPase rate, and ktr, but no change in half-maximally activating Ca2+. In contrast, pseudo-phosphorylation at position 5 (S5D) had no effects, although S5A induced an increase in Ca2+-sensitivity with no change in maximum tension or ktr. We further tested the impact of acidic domain modifications on myofilament function in studies examining the effects of cTnI(A2V), a mutation linked to DCM. This mutation significantly altered the inhibitory activity of cTnI as well cooperativity of activation of myofilament tension, but not when S23/S24 were pseudo-phosphorylated. Our data indicate a new functional and pathological role of amino acid modifications in the N-terminal acidic domain of cTnI that is modified by phosphorylations at cTnI(S23/S24).
机译:先前的结构研究表明,酸性区域由心肌肌钙蛋白I(cTnI)的独特N端肽中的残基1-10组成,具有特殊的功能。利用LC-MS / MS,我们确定了野生型小鼠心脏以及长期表达活性蛋白激酶C-ε(PKCε)并表现出严重扩张型心肌病(DCM)的小鼠心脏cTnI中S5 / S6处的磷酸化位点)。为了确定这些磷酸化的功能重要性,我们克隆并表达了表达假磷酸化cTnI-(S5D),cTnI(S6D)以及cTnI(S5A)和cTnI( S6A)。我们用去污剂(去皮)纤维束的天然Tn与用变体cTnIs重构的Tn交换,并测量了张力和跨桥动力学。与对照相比,由cTnI进行伪磷酸化(S6D)或Ala替代(S6A)控制的肌丝表现出最大张力,ATPase速率和ktr显着降低,但半最大激活Ca 2+ < / sup>。相反,尽管S5A诱导Ca 2 + 敏感性增加,但最大张力或ktr不变,但第5位(S5D)的假磷酸化没有作用。我们在研究cTnI(A2V)(与DCM相关的突变)的影响的研究中进一步测试了酸性结构域修饰对肌丝功能的影响。该突变显着改变了cTnI的抑制活性以及肌丝张力激活的协同作用,但当S23 / S24被假磷酸化时则没有改变。我们的数据表明,氨基酸修饰在cTnI的N末端酸性结构域中具有新的功能和病理学作用,该结构域通过cTnI(S23 / S24)的磷酸化修饰。

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