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首页> 外文期刊>Biochemistry >Design and solution structure of a well-folded stack of two beta-hairpins based on the amino-terminal fragment of human granulin A.
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Design and solution structure of a well-folded stack of two beta-hairpins based on the amino-terminal fragment of human granulin A.

机译:基于人颗粒蛋白A氨基末端片段的两个β-发夹折叠良好的堆栈的设计和溶液结构。

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Four amino acid substitutions were introduced into a peptide corresponding to the amino-terminal subdomain (30-31 residues) of human granulin A (HGA) in order to assess the contributions of a hydrophobic framework and other interactions to structure stabilization of the stack of two beta-hairpins. The resulting hybrid peptide, HGA 1-31 (D1V, K3H, S9I, Q20P) with four free cysteines, spontaneously formed a uniquely disulfide-bonded isomer with an expected [1-3, 2-4] disulfide pairing pattern. This peptide was characterized in detail by use of NMR and shown to assume a highly stable structure in solution, in contrast to the amino-terminal 1-30 fragment of human granulin A. The prototype peptide, or HGA 1-30 (C17S, C27S), had lower resistance to chemical reduction and proteolysis, broad NH and H(alpha) proton resonances, lower proton resonance dispersion, and no slowly exchanging amide protons. Two other peptides, HGA 1-30 (C17S, Q20P, C27S) and HGA 1-31 (D1V, K3H, S9I, C17S, C27S), with either Pro20 stabilizing a potential reverse turn or with a hydrophobic cluster consisting of Val1, His3, and Ile9, had sharper and slightly better dispersed NH and H(alpha) proton resonances, but still no slowly exchanging amide protons. The solution structure of HGA 1-31 (D1V, K3H, S9I, Q20P) indicates that it adopts a well-folded conformation of a stack of two beta-hairpins, as found for the amino-terminal subdomain of the prototypic carp granulin-1 with representative beta-hairpin stacks. These results highlight the importance of both hydrophobic and turn-stabilizing interactions for the structural integrity of the hairpin stack scaffold. The conformational stability appears to be maintained by a combination of the well-formed second beta-hairpin and two hydrophobic clusters, one located at the interface between the two beta-hairpins and the other on "top" of the first beta-hairpin. The implications of these findings for the design of conformationally stable hairpin stacks are discussed.
机译:为了评估疏水性骨架和其他相互作用对两个堆叠结构的结构稳定性的贡献,将四个氨基酸取代引入了相应于人颗粒蛋白A(HGA)的氨基末端亚结构域(30-31个残基)的肽中beta发夹。所得杂合肽HGA 1-31(D1V,K3H,S9I,Q20P)具有四个游离半胱氨酸,自发形成具有预期的[1-3,2-4]二硫键配对模式的独特的二硫键键合异构体。与人颗粒蛋白A的氨基末端1-30片段相反,该肽通过NMR进行了详细表征,并在溶液中呈现出高度稳定的结构。原型肽或HGA 1-30(C17S,C27S ),对化学还原和蛋白水解的抵抗力较低,NH和H(α)质子共振较宽,质子共振分散度较低,并且酰胺质子不能缓慢交换。其他两种肽,HGA 1-30(C17S,Q20P,C27S)和HGA 1-31(D1V,K3H,S9I,C17S,C27S),带有Pro20可以稳定潜在的反向旋转或具有由Val1,His3组成的疏水簇,和Ile9,具有更清晰和更好地分散的NH和Hα质子共振,但仍然没有缓慢交换酰胺质子。 HGA 1-31(D1V,K3H,S9I,Q20P)的溶液结构表明,它采用了两个β-发夹堆叠的良好折叠构象,这是在原型鲤鱼颗粒1的氨基末端亚结构域中发现的具有代表性的β-发夹栈。这些结果突出了疏水相互作用和转稳定相互作用对于发夹堆叠支架的结构完整性的重要性。构象稳定性似乎是由格式良好的第二个β-发夹和两个疏水簇的组合所维持的,两个疏水簇位于两个β-发夹之间的界面,另一个位于第一个β-发夹的“顶部”。讨论了这些发现对构象稳定的发夹堆栈设计的意义。

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