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首页> 外文期刊>Biochemistry >NMR studies of Ca2+ binding to the regulatory domains of cardiac and E41A skeletal muscle troponin C reveal the importance of site I to energetics of the induced structural changes
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NMR studies of Ca2+ binding to the regulatory domains of cardiac and E41A skeletal muscle troponin C reveal the importance of site I to energetics of the induced structural changes

机译:Ca2 +与心脏和E41A骨骼肌肌钙蛋白C调控域结合的NMR研究表明,位点I对诱导的结构变化的能量学至关重要

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摘要

Ca2+ binding to the N-domain of skeletal muscle troponin C (sNTnC) induces an "opening" of the structure [Gagne, S. M., et al. (1995) Nat. Struct. Biol. 2, 784-789], which is typical of Ca2+-regulatory proteins. However, the recent structures of the E41A mutant of skeletal troponin C (E41A sNTnC) [Gagne, S. M., et al. (1997) Biochemistry 36, 4386-4392] and of cardiac muscle troponin C (cNTnC) [Sia, S. K., et al. (1997) J. Biol. Chem. 272, 18216-18221] reveal that both of these proteins remain essentially in the "closed" conformation in their Ca2+-saturated states. Both of these proteins are modified in Ca2+-binding site I, albeit differently, suggesting a critical role for this region in the coupling of Ca2+ binding to the induced structural change. To understand the mechanism and the energetics involved in the Ca2+-induced structural transition, Ca2+ binding to E41A sNTnC and to cNTnC have been investigated by using one-dimensional 1H and two-dimensional inverted question mark1H,15N inverted question mark-HSQC NMR spectroscopy. Monitoring the chemical shift changes during Ca2+ titration of E41A sNTnC permits us to assign the order of stepwise binding as site II followed by site I and reveals that the mutation reduced the Ca2+ binding affinity of the site I by approximately 100-fold [from KD2 = 16 microM [sNTnC; Li, M. X., et al. (1995) Biochemistry 34, 8330-8340] to 1.3 mM (E41A sNTnC)] and of the site II by approximately 10-fold [from KD1 = 1.7 microM (sNTnC) to 15 microM (E41A sNTnC)]. Ca2+ titration of cNTnC confirms that cNTnC binds only one Ca2+ with a determined dissociation constant KD of 2.6 microM. The Ca2+-induced chemical shift changes occur over the entire sequence in cNTnC, suggesting that the defunct site I is perturbed when site II binds Ca2+. These measurements allow us to dissect the mechanism and energetics of the Ca2+-induced structural changes.
机译:Ca 2+与骨骼肌肌钙蛋白C(sNTnC)的N结构域结合会诱导结构的“开放” [Gagne,S. M.,et al。 (1995)Nat。结构。生物学2,2,784-789],这是典型的Ca2 +调节蛋白。然而,骨骼肌肌钙蛋白C的E41A突变体(E41A sNTnC)的最新结构[Gagne,S.M。,等。 (1997)Biochemistry 36,4386-4392]和心肌肌钙蛋白C(cNTnC)[Sia,S. K.,等。 (1997)生物化学杂志。化学272,18216-18221]揭示了这两种蛋白质在其Ca2 +饱和状态下基本保持“封闭”构象。这两种蛋白质都在Ca2 +结合位点I上进行了修饰,尽管有所不同,这表明该区域在Ca2 +结合与诱导的结构变化的偶联中起关键作用。为了解Ca2 +诱导的结构转变所涉及的机理和能量,已使用一维1H和二维倒置问号1H,15N倒置问号-HSQC NMR光谱研究了Ca2 +与E41A sNTnC和cNTnC的结合。监测E41A sNTnC的Ca2 +滴定过程中的化学位移变化使我们可以将逐步结合的顺序指定为位点II,然后是位点I,并揭示了该突变使位点I的Ca2 +结合亲和力降低了约100倍[来自KD2 = 16 microM [sNTnC; Li,M.X。等。 (1995)Biochemistry 34,8330-8340]到1.3 mM(E41A sNTnC)]和位点II的大约10倍[从KD1 = 1.7 microM(sNTnC)到15 microM(E41A sNTnC)]。 cNTnC的Ca2 +滴定证实cNTnC仅结合一个Ca2 +,确定的解离常数KD为2.6 microM。 Ca2 +诱导的化学位移变化发生在cNTnC的整个序列中,这表明当位点II结合Ca2 +时,无效的位点I受到干扰。这些测量结果使我们能够剖析Ca2 +诱导的结构变化的机理和能量学。

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