What are the minimal folding seeds in proteins? Experimental and theoretical assessment of secondary structure propensities of small peptide fragments

被引:4
作者
Osifova, Zuzana [1 ,2 ]
Kalvoda, Tadeas [1 ]
Galgonek, Jakub [1 ]
Culka, Martin [1 ]
Vondrasek, Jiri [1 ]
Bour, Petr [1 ]
Bednarova, Lucie [1 ]
Andrushchenko, Valery [1 ]
Dracinsky, Martin [1 ]
Rulisek, Lubomir [1 ]
机构
[1] Czech Acad Sci, Inst Organ Chem & Biochem, Flemingovo namesti 542 2, Prague 6, Czech Republic
[2] Charles Univ Prague, Fac Sci, Dept Organ Chem, Hlavova 2030, Prague 12840, Czech Republic
关键词
VIBRATIONAL CIRCULAR-DICHROISM; SPIN COUPLING-CONSTANTS; CONFORMATIONAL PROPENSITIES; ALANINE PEPTIDES; AB-INITIO; NMR; TRIPEPTIDES; DEPENDENCE; DYNAMICS; ENTROPY;
D O I
10.1039/d3sc04960d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Certain peptide sequences, some of them as short as amino acid triplets, are significantly overpopulated in specific secondary structure motifs in folded protein structures. For example, 74% of the EAM triplet is found in alpha-helices, and only 3% occurs in the extended parts of proteins (typically beta-sheets). In contrast, other triplets (such as VIV and IYI) appear almost exclusively in extended parts (79% and 69%, respectively). In order to determine whether such preferences are structurally encoded in a particular peptide fragment or appear only at the level of a complex protein structure, NMR, VCD, and ECD experiments were carried out on selected tripeptides: EAM (denoted as pro-'alpha-helical' in proteins), KAM(alpha), ALA(alpha), DIC(alpha), EKF(alpha), IYI(pro-beta-sheet or more generally, pro-extended), and VIV(beta), and the reference alpha-helical CATWEAMEKCK undecapeptide. The experimental data were in very good agreement with extensive quantum mechanical conformational sampling. Altogether, we clearly showed that the pro-helical vs. pro-extended propensities start to emerge already at the level of tripeptides and can be fully developed at longer sequences. We postulate that certain short peptide sequences can be considered minimal "folding seeds". Admittedly, the inherent secondary structure propensity can be overruled by the large intramolecular interaction energies within the folded and compact protein structures. Still, the correlation of experimental and computational data presented herein suggests that the secondary structure propensity should be considered as one of the key factors that may lead to understanding the underlying physico-chemical principles of protein structure and folding from the first principles. We investigate short peptides and their propensity to form specific secondary structures. We show that the propensity might start to appear in sequences as short as several (3-11) amino acids.
引用
收藏
页码:594 / 608
页数:15
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