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合成异源三聚体肽中IV型胶原细胞粘附结构域的局部构象特性研究。

Studies of the local conformational properties of the cell-adhesion domain of collagen type IV in synthetic heterotrimeric peptides.

作者信息

Saccà Barbara, Fiori Stella, Moroder Luis

机构信息

Max-Planck-Institute for Biochemistry, Am Klopferspitz 18A, D-82152 Martinsried, Germany.

出版信息

Biochemistry. 2003 Apr 1;42(12):3429-36. doi: 10.1021/bi0206762.

Abstract

Collagen type IV is a specialized form of collagen that is found only in basement membranes. It is involved in integrin-mediated cell-adhesion processes, and the responsible binding sites for the alpha1beta1 integrin cell receptor have been identified as Asp461 of the two alpha1 chains and Arg461 of the alpha2 chain. In the most plausible stagger of native collagen type IV the alpha2 chain is the tailing one. This has recently been confirmed by the differentiated binding affinities of synthetic heterotrimeric collagen peptides in which the chains were staggered in this native register as well as in the less plausible alpha1alpha2alpha1' register with an artificial cystine knot. In the present work, two heterotrimeric collagen peptides with chain registers identical to the previous ones were synthesized for fluorescence resonance energy transfer and emission anisotropy measurements, exploiting the native Phe464 in the alpha2 chain as donor and an Ile467Tyr mutation in the alpha1' chain as acceptor fluorophore. This fluorophore pair allowed extraction of more detailed information on the conformational properties of the cell-adhesion epitope incorporated into the central part of the trimeric collagen model peptides. A comparison of the experimentally derived values of the interfluorophore distance and of the orientation factor kappa(2) with the values extracted from the molecular model of the trimer in the native stagger confirmed a triple-helical structure of the adhesion-site portion at low temperature. The thermal unfolding of this central domain was specifically monitored by emission anisotropy, allowing unambiguous assignment of the three structural domains of the trimeric collagen molecules detected by microcalorimetry, with the integrin binding site as the portion of weakest triple-helical stability flanked by two more stable triple-helical regions. The results are consistent with the picture of a conformational microheterogeneity as the responsible property for selective recognition of collagens by interacting proteins.

摘要

IV型胶原蛋白是一种特殊形式的胶原蛋白,仅存在于基底膜中。它参与整合素介导的细胞粘附过程,已确定α1β1整合素细胞受体的负责结合位点为两条α1链的Asp461和α2链的Arg461。在天然IV型胶原蛋白最合理的交错排列中,α2链是尾部链。最近,通过合成异源三聚体胶原蛋白肽的不同结合亲和力证实了这一点,其中这些链以这种天然排列方式以及较不合理的α1α2α1'排列方式交错排列,并带有一个人工胱氨酸结。在本研究中,合成了两种链排列与之前相同的异源三聚体胶原蛋白肽,用于荧光共振能量转移和发射各向异性测量,利用α2链中的天然苯丙氨酸464作为供体,α1'链中的异亮氨酸467突变为酪氨酸作为受体荧光团。这一荧光团对使得能够提取关于纳入三聚体胶原蛋白模型肽中心部分的细胞粘附表位构象特性的更详细信息。将实验得出的荧光团间距离和取向因子κ(2)值与从天然交错排列的三聚体分子模型中提取的值进行比较,证实了低温下粘附位点部分的三螺旋结构。通过发射各向异性专门监测了这个中心结构域的热解折叠,从而能够明确确定微量热法检测到的三聚体胶原蛋白分子的三个结构域,整合素结合位点是三螺旋稳定性最弱的部分,两侧是两个更稳定的三螺旋区域。这些结果与构象微异质性是相互作用蛋白选择性识别胶原蛋白的负责特性这一观点一致。

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