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文昌鱼钙载体蛋白中的折叠单元:其氨基末端和羧基末端片段的结构与功能特性

Folding units in calcium vector protein of amphioxus: Structural and functional properties of its amino- and carboxy-terminal halves.

作者信息

Baladi S, Tsvetkov P O, Petrova T V, Takagi T, Sakamoto H, Lobachov V M, Makarov A A, Cox J A

机构信息

Department of Biochemistry, University of Geneva, 1211 Geneva 4, Switzerland.

出版信息

Protein Sci. 2001 Apr;10(4):771-8. doi: 10.1110/ps.40601.

Abstract

Muscle of amphioxus contains large amounts of a four EF-hand Ca2+-binding protein, CaVP, and its target, CaVPT. To study the domain structure of CaVP and assess the structurally important determinants for its interaction with CaVPT, we expressed CaVP and its amino (N-CaVP) and carboxy-terminal halves (C-CaVP). The interactive properties of recombinant and wild-type CaVP are very similar, despite three post-translational modifications in the wild-type protein. N-CaVP does not bind Ca2+, shows a well-formed hydrophobic core, and melts at 44 degrees C. C-CaVP binds two Ca2+ with intrinsic dissociation constants of 0.22 and 140 microM (i.e., very similar to the entire CaVP). The metal-free domain in CaVP and C-CaVP shows no distinct melting transition, whereas its 1Ca2+ and 2Ca2+) forms melt in the 111 degrees -123 degrees C range, suggesting that C-CaVP and the carboxy- domain of CaVP are natively unfolded in the metal-free state and progressively gain structure upon binding of 1Ca2+ and 2Ca2+. Thermal denaturation studies provide evidence for interdomain interaction: the apo, 1Ca2+ and 2Ca2+ states of the carboxy-domain destabilize to different degrees the amino-domain. Only C-CaVP forms a Ca2+-dependent 1:1 complex with CaVPT. Our results suggest that the carboxy-terminal domain of CaVP interacts with CaVPT and that the amino-terminal lobe modulates this interaction.

摘要

文昌鱼的肌肉中含有大量一种具有四个EF手型结构的钙离子结合蛋白CaVP及其靶点CaVPT。为了研究CaVP的结构域结构并评估其与CaVPT相互作用的重要结构决定因素,我们表达了CaVP及其氨基端(N-CaVP)和羧基端片段(C-CaVP)。尽管野生型蛋白存在三种翻译后修饰,但重组型和野生型CaVP的相互作用特性非常相似。N-CaVP不结合钙离子,具有良好的疏水核心,在44℃时发生解链。C-CaVP结合两个钙离子,其固有解离常数分别为0.22和140微摩尔(即与整个CaVP非常相似)。CaVP和C-CaVP中的无金属结构域没有明显的解链转变,而其1Ca2+和2Ca2+形式在111℃-123℃范围内解链,这表明C-CaVP和CaVP的羧基结构域在无金属状态下是天然未折叠的,在结合1Ca2+和2Ca2+后逐渐获得结构。热变性研究为结构域间相互作用提供了证据:羧基结构域的无配体、1Ca2+和2Ca2+状态对氨基结构域的稳定性有不同程度的破坏。只有C-CaVP与CaVPT形成钙离子依赖的1:1复合物。我们的结果表明,CaVP的羧基端结构域与CaVPT相互作用,而氨基端叶调节这种相互作用。

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