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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Structures of designed armadillo-repeat proteins show propagation of inter-repeat interface effects
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Structures of designed armadillo-repeat proteins show propagation of inter-repeat interface effects

机译:设计的犰狳重复蛋白的结构显示了重复间界面效应的传播

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摘要

The armadillo repeat serves as a scaffold for the development of modular peptide-recognition modules. In order to develop such a system, three crystal structures of designed armadillo-repeat proteins with third-generation N-caps (Y-III III-type), four or five internal repeats (M-type) and second-generation C-caps (A(II II)-type) were determined at 1.8 angstrom (His-Y(III III)M(4 4)A(II II)), 2.0 angstrom (His-Y(III III)M(5 5)A(II II)) and 1.95 angstrom (Y(III III)M(5 5)A(II II)) resolution and compared with those of variants with third-generation C-caps. All constructs are full consensus designs in which the internal repeats have exactly the same sequence, and hence identical conformations of the internal repeats are expected. The N-cap and internal repeats M-1 1 to M-3 3 are indeed extremely similar, but the comparison reveals structural differences in internal repeats M-4 4 and M-5 5 and the C-cap. These differences are caused by long-range effects of the C-cap, contacting molecules in the crystal, and the intrinsic design of the repeat. Unfortunately, the rigid-body movement of the C-terminal part impairs the regular arrangement of internal repeats that forms the putative peptide-binding site. The second-generation C-cap improves the packing of buried residues and thereby the stability of the protein. These considerations are useful for future improvements of an armadillo-repeat-based peptide-recognition system.
机译:犰狳重复用作模块化肽识别模块的脚手架。为了开发这样的系统,三种晶体结构的三种晶体结构,具有第三代N帽(Y-III III型),四个或五个内部重复(M型)和第二代C-CAPS ((II II)-TYPE)在1.8埃(HIS-Y(III III)M(4)A(II II)),2.0埃(HIS-Y(III III)M(5 5)A中)测定(II II))和1.95埃(Y(III III)M(5 5)A(II II))分辨率,与第三代C-CAPS的变体相比。所有构建体都是完全共识设计,其中内部重复具有完全相同的序列,因此预期内部重复的相同构象。 n帽和内部重复M-1 1至M-3 3确实非常相似,但比较揭示了内部重复M-4 4和M-5 5和C帽的结构差异。这些差异是由C帽的远程效应引起的,晶体中的分子和重复的内在设计。不幸的是,C末端部分的刚体运动损害了形成推定的肽结合位点的内部重复的规则排列。第二代C帽改善了掩埋残留物的包装,从而改善了蛋白质的稳定性。这些考虑对于未来的犰狳 - 重复肽识别系统有助于改善。

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