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L2'环对于半胱天冬酶-7活性位点的形成至关重要。

L2' loop is critical for caspase-7 active site formation.

作者信息

Witkowski Witold A, Hardy Jeanne A

机构信息

Department of Chemistry, University of Massachusetts Amherst, Amherst, Massachusetts 01003, USA.

出版信息

Protein Sci. 2009 Jul;18(7):1459-68. doi: 10.1002/pro.151.

Abstract

The active sites of caspases are composed of four mobile loops. A loop (L2) from one half of the dimer interacts with a loop (L2') from the other half of the dimer to bind substrate. In an inactive form, the two L2' loops form a cross-dimer hydrogen-bond network over the dimer interface. Although the L2' loop has been implicated as playing a central role in the formation of the active-site loop bundle, its precise role in catalysis has not been shown. A detailed understanding of the active and inactive conformations is essential to control the caspase function. We have interrogated the contributions of the residues in the L2' loop to catalytic function and enzyme stability. In wild-type and all mutants, active-site binding results in substantial stabilization of the complex. One mutation, P214A, is significantly destabilized in the ligand-free conformation, but is as stable as wild type when bound to substrate, indicating that caspase-7 rests in different conformations in the absence and presence of substrate. Residues K212 and I213 in the L2' loop are shown to be essential for substrate-binding and thus proper catalytic function of the caspase. In the crystal structure of I213A, the void created by side-chain deletion is compensated for by rearrangement of tyrosine 211 to fill the void, suggesting that the requirements of substrate-binding are sufficiently strong to induce the active conformation. Thus, although the L2' loop makes no direct contacts with substrate, it is essential for buttressing the substrate-binding groove and is central to native catalytic efficiency.

摘要

半胱天冬酶的活性位点由四个可移动环组成。二聚体一半的一个环(L2)与二聚体另一半的一个环(L2')相互作用以结合底物。在无活性形式下,两个L2'环在二聚体界面上形成一个交叉二聚体氢键网络。尽管L2'环被认为在活性位点环束的形成中起核心作用,但其在催化中的精确作用尚未得到证实。详细了解活性和无活性构象对于控制半胱天冬酶功能至关重要。我们研究了L2'环中残基对催化功能和酶稳定性的贡献。在野生型和所有突变体中,活性位点结合导致复合物显著稳定。一种突变体P214A在无配体构象中显著不稳定,但与底物结合时与野生型一样稳定,这表明半胱天冬酶-7在无底物和有底物时处于不同构象。L2'环中的残基K212和I213对于底物结合以及半胱天冬酶的正常催化功能至关重要。在I213A的晶体结构中,侧链缺失产生的空位通过酪氨酸211的重排来填补,这表明底物结合的需求足够强烈以诱导活性构象。因此,尽管L2'环不与底物直接接触,但它对于支撑底物结合凹槽至关重要,并且是天然催化效率的核心。

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