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Improving the accuracy of protein secondary structure prediction using structural alignment.利用结构比对提高蛋白质二级结构预测的准确性。
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Reconstitution of a native-like SH2 domain from disordered peptide fragments examined by multidimensional heteronuclear NMR.通过多维异核核磁共振研究从无序肽片段重构天然样SH2结构域。
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本文引用的文献

1
The preparation of subtilisn-modified ribonuclease and the separation of the peptide and protein components.枯草杆菌蛋白酶修饰的核糖核酸酶的制备以及肽和蛋白质成分的分离。
J Biol Chem. 1959 Jun;234(6):1459-65.
2
Structure of Taq polymerase with DNA at the polymerase active site.在聚合酶活性位点处与DNA结合的Taq聚合酶的结构。
Nature. 1996 Jul 18;382(6588):278-81. doi: 10.1038/382278a0.
3
In vivo formation of active aspartate transcarbamoylase from complementing fragments of the catalytic polypeptide chains.由催化多肽链的互补片段在体内形成活性天冬氨酸转氨甲酰酶。
Protein Sci. 1993 Jun;2(6):1013-23. doi: 10.1002/pro.5560020614.
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Structure at 2.5 A of a designed peptide that maintains solubility of membrane proteins.一种维持膜蛋白溶解性的设计肽在2.5埃分辨率下的结构。
Science. 1993 Oct 29;262(5134):734-8. doi: 10.1126/science.8235592.
5
SEQSEE: a comprehensive program suite for protein sequence analysis.SEQSEE:一个用于蛋白质序列分析的综合程序套件。
Comput Appl Biosci. 1994 Apr;10(2):121-32. doi: 10.1093/bioinformatics/10.2.121.
6
Thermal stability of chimeric isopropylmalate dehydrogenase genes constructed from a thermophile and a mesophile.由嗜热菌和嗜温菌构建的嵌合异丙基苹果酸脱氢酶基因的热稳定性
Protein Eng. 1995 Jan;8(1):39-43. doi: 10.1093/protein/8.1.39.
7
Cooperative self-assembly of SH2 domain fragments restores phosphopeptide binding.SH2结构域片段的协同自组装恢复了磷酸肽结合。
Biochemistry. 1993 Oct 26;32(42):11279-84. doi: 10.1021/bi00093a003.
8
Crystal structure of Thermus aquaticus DNA polymerase.嗜热水生栖热菌DNA聚合酶的晶体结构
Nature. 1995 Aug 17;376(6541):612-6. doi: 10.1038/376612a0.
9
Estimation of globular protein secondary structure from circular dichroism.基于圆二色性的球状蛋白质二级结构估算
Biochemistry. 1981 Jan 6;20(1):33-7. doi: 10.1021/bi00504a006.
10
Thermodynamics of the binding of S-peptide to S-protein to form ribonuclease S.S肽与S蛋白结合形成核糖核酸酶S的热力学
Biochemistry. 1971 Mar 2;10(5):806-17. doi: 10.1021/bi00781a013.

肽对Taq DNA聚合酶Stoffel片段N端截短的挽救作用

Peptide rescue of an N-terminal truncation of the Stoffel fragment of taq DNA polymerase.

作者信息

Vainshtein I, Atrazhev A, Eom S H, Elliott J F, Wishart D S, Malcolm B A

机构信息

Protein Engineering Network of Centers of Excellence, University of Alberta, Edmonton, Canada.

出版信息

Protein Sci. 1996 Sep;5(9):1785-92. doi: 10.1002/pro.5560050904.

DOI:10.1002/pro.5560050904
PMID:8880902
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2143541/
Abstract

Deletion of the first 289 amino acids of the DNA polymerase from Thermus aquaticus (Taq polymerase) removes the 5' to 3' exonuclease domain to yield the thermostable Stoffel polymerase fragment (Lawyer et al., 1989). Preliminary N-terminal truncation studies of the Stoffel fragment suggested that removal of an additional 12 amino acids (the Stof delta 12 mutant) had no significant effect on activity or stability, but that the further truncation of the protein (the Stof delta 47, in which 47 amino acids were deleted), resulted in a significant loss of both activity and thermostability. A 33-amino acid synthetic peptide, based on this critical region (i.e., residues 303-335 inclusive), was able to restore 85% of the Stof delta 12 activity when added back to the truncated Stof delta 47 protein as well as return the temperature optimum to that of the Stof delta 12 and Stoffel proteins. Examination of the crystal structure of Taq polymerase (Kim et al., 1995) shows that residues 302-336 of the enzyme form a three-stranded beta-sheet structure that interacts with the remainder of the protein. CD analysis of the 33-amino acid peptide indicates that the free peptide also adopts an ordered structure in solution with more than 50% beta-sheet content. These data suggest that this 33-amino acid peptide constitutes a stable beta-sheet structure capable of rescuing the truncated polymerase in a fashion analogous to the well-documented complementation of Ribonuclease S protein by the 15-residue, alpha-helical, S peptide.

摘要

去除水生栖热菌DNA聚合酶(Taq聚合酶)的前289个氨基酸会移除5'至3'核酸外切酶结构域,从而产生热稳定的Stoffel聚合酶片段(Lawyer等人,1989年)。对Stoffel片段进行的初步N端截短研究表明,再去除12个氨基酸(Stof delta 12突变体)对活性或稳定性没有显著影响,但进一步截短该蛋白(Stof delta 47,其中47个氨基酸被删除)会导致活性和热稳定性显著丧失。基于这个关键区域(即包含第303 - 335位残基)的一个33个氨基酸的合成肽,当添加回截短的Stof delta 47蛋白时,能够恢复85%的Stof delta 12活性,并使最适温度恢复到Stof delta 12和Stoffel蛋白的水平。对Taq聚合酶晶体结构的研究(Kim等人,1995年)表明,该酶的第302 - 336位残基形成了一个与蛋白质其余部分相互作用的三链β折叠结构。对这个33个氨基酸肽的圆二色性分析表明,游离肽在溶液中也呈现出有序结构,β折叠含量超过50%。这些数据表明,这个33个氨基酸的肽构成了一个稳定的β折叠结构,能够以类似于15个残基的α螺旋S肽对核糖核酸酶S蛋白进行充分记录的互补作用的方式拯救截短的聚合酶。