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钙蛋白酶抑制蛋白(一种内在无序的钙蛋白酶抑制剂)的局部结构偏好性

Local structural preferences of calpastatin, the intrinsically unstructured protein inhibitor of calpain.

作者信息

Kiss Robert, Kovács Dénes, Tompa Péter, Perczel András

机构信息

Laboratory of Structural Chemistry and Biology, Institute of Chemistry, Eötvös Loránd University, Budapest, Hungary.

出版信息

Biochemistry. 2008 Jul 1;47(26):6936-45. doi: 10.1021/bi800201a. Epub 2008 Jun 7.

Abstract

Calpain, the calcium-activated intracellular cysteine protease, is under the tight control of its intrinsically unstructured inhibitor, calpastatin. Understanding how potent inhibition by calpastatin can be reconciled with its unstructured nature provides deeper insight into calpain function and a more general understanding of how proteins devoid of a well-defined structure carry out their function. To this end, we performed a full NMR assignment of hCSD1 to characterize it in its solution state. Secondary chemical shift values and NMR relaxation data, R 1, R 2, and hetero-NOE, as well as spectral density function analysis have shown that conserved regions of calpastatin, subdomains A and C, which are responsible for calcium-dependent anchoring of the inhibitor to the enzyme, preferentially sample partially helical backbone conformations of a reduced flexibility. Moreover, the linker regions between subdomains are more flexible with no structural preference. The primary determinant of calpain inhibition, subdomain B, also has a non-fully random conformational preference, resembling a beta-turn structure also ascertained by prior studies of a 27-residue peptide encompassing the inhibitory region. This local structural preference is also confirmed by a deviation in chemical shift values between full-length calpastatin domain 1 and a truncated construct cut in the middle of subdomain B. At the C-terminal end of the molecule, a nascent helical region was found, which in contrast to the overall structural properties of the molecule may indicate a previously unknown functional region. Overall, these observations provide further evidence that supports previous suggestions that intrinsically unstructured proteins use preformed structural elements in efficient partner recognition.

摘要

钙蛋白酶是一种钙激活的细胞内半胱氨酸蛋白酶,受其内在无序的抑制剂钙蛋白酶抑制蛋白的严格控制。了解钙蛋白酶抑制蛋白的强效抑制作用如何与其无序性质相协调,能更深入地洞察钙蛋白酶的功能,并更全面地理解缺乏明确结构的蛋白质是如何发挥其功能的。为此,我们对人钙蛋白酶抑制蛋白结构域1(hCSD1)进行了完整的核磁共振(NMR)归属,以在溶液状态下对其进行表征。二级化学位移值以及NMR弛豫数据(R1、R2和异核NOE),还有光谱密度函数分析表明,钙蛋白酶抑制蛋白的保守区域,即负责抑制剂与酶的钙依赖性锚定的A和C亚结构域,优先呈现部分螺旋的主链构象,且柔韧性降低。此外,亚结构域之间的连接区域更具柔韧性,没有结构偏好。钙蛋白酶抑制的主要决定因素,即B亚结构域,也具有并非完全随机的构象偏好,类似于先前对包含抑制区域的27个残基肽段研究中确定的β-转角结构。全长钙蛋白酶抑制蛋白结构域1与在B亚结构域中间切割的截短构建体之间的化学位移值偏差也证实了这种局部结构偏好。在分子的C末端,发现了一个新生的螺旋区域,与分子的整体结构性质相反,这可能表明存在一个以前未知的功能区域。总体而言,这些观察结果提供了进一步的证据,支持了先前的观点,即内在无序蛋白质在有效的伴侣识别中使用预先形成的结构元件。

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