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首页> 外文期刊>Journal of Molecular Biology >Crystal structures of the neurotrophin-binding domain of TrkA, TrkB and TrkC.
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Crystal structures of the neurotrophin-binding domain of TrkA, TrkB and TrkC.

机译:TrkA,TrkB和TrkC的神经营养蛋白结合结构域的晶体结构。

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The Trk receptors and their neurotrophin ligands control development and maintenance of the nervous system. The crystal structures of the ligand binding domain of TrkA, TrkB, and TrkC were solved and refined to high resolution. The domains adopt an immunoglobulin-like fold, but crystallized in all three instances as dimers with the N-terminal strand of each molecule replaced by the same strand of a symmetry-related mate. Models of the correctly folded domains could be constructed by changing the position of a single residue, and the resulting model of the binding domain of TrkA is essentially identical with the bound structure as observed in a complex with nerve growth factor. An analysis of the existing mutagenesis data for TrkA and TrkC in light of these structures reveals the structural reasons for the specificity among the Trk receptors, and explains the underpinnings of the multi-functional ligands that have been reported. The overall structure of all three domains belongs to the I-set of immunoglobulin-like domains, but shows several unusual features, such as an exposed disulfide bridge linking two neighboring strands in the same beta-sheet. For all three domains, the residues that deviate from the standard fingerprint pattern common to the I-set family fall in the region of the ligand binding site observed in the complex. Therefore, identification of these deviations in the sequences of other immunoglobulin-like domain-containing receptors may help to identify their ligand binding site even in the absence of structural or mutagenesis data. Copyright 1998 Academic Press.
机译:Trk受体及其神经营养蛋白配体控制着神经系统的发育和维持。解决了TrkA,TrkB和TrkC的配体结合域的晶体结构,并将其精制至高分辨率。这些结构域采用免疫球蛋白样的折叠,但在所有三种情况下均以二聚体形式结晶,每个分子的N末端链被对称相关伴侣的同一链取代。可以通过改变单个残基的位置来构建正确折叠的结构域的模型,并且如在具有神经生长因子的复合物中观察到的那样,所得的TrkA结合结构域的模型与结合结构基本上相同。根据这些结构对TrkA和TrkC的现有诱变数据进行分析,揭示了Trk受体之间特异性的结构性原因,并解释了已报道的多功能配体的基础。所有这三个结构域的整体结构都属于免疫球蛋白样结构域的I组,但显示出一些不寻常的特征,例如连接同一β-折叠中两条相邻链的裸露的二硫键。对于所有三个结构域,与I-set家族共有的标准指纹图谱不同的残基都落在复合物中观察到的配体结合位点区域。因此,即使在没有结构或诱变数据的情况下,鉴定其他含有免疫球蛋白的域的受体的序列中的这些偏差也可能有助于鉴定其配体结合位点。版权所有1998学术出版社。

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