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关于Cripto CFC结构域与ALK4受体相互作用的结构见解。

Structural insights into the interaction between the Cripto CFC domain and the ALK4 receptor.

作者信息

Calvanese Luisa, Saporito Angela, Oliva Romina, D' Auria Gabriella, Pedone Carlo, Paolillo Livio, Ruvo Menotti, Marasco Daniela, Falcigno Lucia

机构信息

Dipartimento di Chimica, Università Federico II, Complesso Universitario MSA, via Cintia 45, 80126, Napoli, Italy.

出版信息

J Pept Sci. 2009 Mar;15(3):175-83. doi: 10.1002/psc.1091.

Abstract

The protein Cripto is the founding member of the extra-cellular EGF-CFC growth factors, which are composed of two adjacent cysteine-rich domains: the EGF-like and the CFC. Members of the EGF-CFC family play key roles in embryonic development and are also implicated in tumourigenesis. Cripto is highly over-expressed in many tumours, while it is poorly detectable in normal tissues. Although both Cripto domains are involved in its tumourigenic activity, the CFC domain appears to play a crucial role. Indeed, through this domain, Cripto interferes with the onco-suppressive activity of Activins, either by blocking the Activin receptor ALK4 or by antagonising proteins of the TGF-beta family. We have undertaken the chemical synthesis and the structural characterisation of human CFC Cripto domain. Using a combined NMR and computational approach, supported by binding studies by SPR, we have investigated the molecular basis of the interaction between h-CFC and ALK4. Binding studies indicate that the synthetic h-CFC interacts with the ALK4 receptor with a K(D) in micro M range, whereas it does not recognise the ActRIIB receptor. The NMR study shows that the h-CFC overall topology is determined by the presence of three disulfide bridges and that residues H120 and W124 are located between the first strand and the first loop with the side chains externally exposed. A model of the CFC-ALK4 complex has also been obtained by molecular docking and shows that all residues indicated by prior mutagenesis studies can contribute to the ALK4-CFC interaction at the protein-protein interface.

摘要

蛋白质Cripto是细胞外EGF-CFC生长因子家族的创始成员,该家族由两个相邻的富含半胱氨酸的结构域组成:EGF样结构域和CFC结构域。EGF-CFC家族成员在胚胎发育中起关键作用,也与肿瘤发生有关。Cripto在许多肿瘤中高度过表达,而在正常组织中很难检测到。虽然Cripto的两个结构域都参与其致瘤活性,但CFC结构域似乎起着关键作用。实际上,通过这个结构域,Cripto通过阻断激活素受体ALK4或拮抗TGF-β家族的蛋白质来干扰激活素的抑癌活性。我们已经完成了人CFC Cripto结构域的化学合成和结构表征。使用结合核磁共振(NMR)和计算方法,并得到表面等离子体共振(SPR)结合研究的支持,我们研究了h-CFC与ALK4之间相互作用的分子基础。结合研究表明,合成的h-CFC与ALK4受体相互作用,解离常数(K(D))在微摩尔范围内,而它不识别ActRIIB受体。核磁共振研究表明,h-CFC的整体拓扑结构由三个二硫键决定,并且残基H120和W124位于第一条链和第一个环之间,侧链向外暴露。还通过分子对接获得了CFC-ALK4复合物的模型,该模型表明先前诱变研究指出的所有残基都可在蛋白质-蛋白质界面处对ALK4-CFC相互作用做出贡献。

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