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钙诱导单体应变促进神经钙黏蛋白二聚化。

Calcium-induced strain in the monomer promotes dimerization in neural cadherin.

机构信息

Department of Chemistry and Biochemistry, University of Mississippi, University, Mississippi 38677, United States.

出版信息

Biochemistry. 2011 Oct 4;50(39):8437-44. doi: 10.1021/bi200902s. Epub 2011 Sep 7.

Abstract

Cadherins are cell adhesion proteins that are important for tissue formation and integrity. Cell-cell adhesion occurs through the formation of the strand-crossover dimer between identical cadherins on the surface of neighboring cells. The strand-crossover dimer forms exclusively between their EC1 domains via swapping of the βA sheet by undocking the conserved tryptophan 2, W2, from its own hydrophobic pocket and docking it into the hydrophobic pocket of its adhesive partner. An interesting aspect of the system is the fact that critical noncovalent interactions in the monomer re-form in the dimer. Thus, as these noncovalent interactions are conserved, what drives the formation of dimer? Moreover, why is dimer formation calcium-dependent? Thus, to probe the structural and energetic effects of calcium on the noncovalent interactions that are necessary for dimer formation, we performed spectroscopic, stability, and assembly studies of wild-type and two mutants, W2A and E89A, of neural (N-) cadherin. We find that while the ionic interaction involving E89 has a minimal effect on the general stability of the closed conformation of the βA sheet, the hydrophobic interaction involving W2 is the source of the calcium requirement for adhesive dimer formation. The binding of calcium creates strain in the W2-hydrophbic pocket interaction through direct connection of E11 at the C-terminus of the βA sheet to calcium. To overcome this unfavorable condition in the monomer, N-cadherin forms a dimer. Taken together, our data provide a thermodynamic basis for the calcium dependence of strand-crossover dimer formation in N-cadherin.

摘要

钙黏蛋白是细胞黏附蛋白,对于组织的形成和完整性非常重要。细胞间的黏附通过相邻细胞表面相同钙黏蛋白之间的链交叉二聚体形成。链交叉二聚体仅在 EC1 结构域之间形成,通过将保守的色氨酸 2(W2)从其自身的疏水性口袋中脱离并将其停靠在其黏附伴侣的疏水性口袋中,βA 片层发生交换。该系统的一个有趣方面是单体中关键的非共价相互作用在二聚体中重新形成的事实。因此,由于这些非共价相互作用是保守的,那么是什么驱动二聚体的形成呢?此外,为什么二聚体的形成依赖于钙呢?因此,为了探究钙对形成二聚体所需的非共价相互作用的结构和能量效应,我们对野生型和两个突变体 W2A 和 E89A 的神经(N-)钙黏蛋白进行了光谱学、稳定性和组装研究。我们发现,虽然涉及 E89 的离子相互作用对βA 片层封闭构象的一般稳定性影响很小,但涉及 W2 的疏水性相互作用是钙对黏附二聚体形成的要求的来源。钙的结合通过βA 片层末端的 E11 与钙的直接连接,在 W2-疏水性口袋相互作用中产生应变。为了克服单体中这种不利条件,N-钙黏蛋白形成二聚体。总之,我们的数据为 N-钙黏蛋白中链交叉二聚体形成的钙依赖性提供了热力学基础。

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