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基于螺旋条带疏水性指数算法预测蛋白质中的α螺旋和T细胞呈递序列。

Prediction of alpha helices and T cell-presented sequences in proteins with algorithms based on strip-of-helix hydrophobicity index.

作者信息

Reyes V E, Lew R A, Lu S, Humphreys R E

出版信息

Methods Enzymol. 1991;202:225-38. doi: 10.1016/0076-6879(91)02013-y.

Abstract

Recurrent aliphatic hydrophobic amino acids which occur in the sequence of a protein or a peptide at positions which form an axial, hydrophobic strip when the sequence is coiled as an alpha helix might stabilize coiling against hydrophobic surfaces. That effect can lead to helix formation against hydrophobic cores of nascent proteins or excised T cell-presented peptides and to protease protection and scavenging for presentation by MHC molecules. Such consensus sequences of recurrent hydrophobicity creating a scavenger "S" site might overlap to varying degrees the T cell-presented "T" epitope which actually sits in the antigen-binding site of a MHC molecules, as long as a cleavage "C" site does not fall between them when they are relatively separated. Cooperatively among the residues in an axial, hydrophobic strip to stabilize helix formation is reflected in the SOHHI, which is the mean hydrophobicity of residues in such potential strips. Algorithms based on the SOHHI, with additional considerations related to length and caps, lead to sensitive and efficient predictions of structural helices and of T cell-presented epitopes. In experimental tests of these ideas, the SOHHI was found to correlate to helical coiling of amphiphilic peptides in the presence of lipid vesicles. These principles lead to hypotheses to alter the potency and range of MHC restriction of peptide vaccines or to decrease the immunogenicity of therapeutic proteins.

摘要

当蛋白质或肽的序列盘绕成α螺旋时,在形成轴向疏水带的位置出现的重复性脂肪族疏水氨基酸,可能会稳定其在疏水表面的盘绕。这种效应可导致针对新生蛋白质的疏水核心或切除的T细胞呈递肽形成螺旋,并实现蛋白酶保护以及通过MHC分子进行呈递的清除。这种形成清除剂“S”位点的重复性疏水性共有序列,可能会在不同程度上与实际位于MHC分子抗原结合位点的T细胞呈递“T”表位重叠,只要当它们相对分离时切割“C”位点不在它们之间。轴向疏水带中的残基协同稳定螺旋形成,这反映在SOHHI中,SOHHI是此类潜在条带中残基的平均疏水性。基于SOHHI的算法,再加上与长度和末端相关的其他考虑因素,可实现对结构螺旋和T细胞呈递表位的灵敏且高效的预测。在这些观点的实验测试中,发现SOHHI与脂质囊泡存在时两亲性肽的螺旋盘绕相关。这些原理引出了一些假设,以改变肽疫苗的MHC限制效力和范围,或降低治疗性蛋白质的免疫原性。

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