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首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Development of laminin receptor agonists: identification of important functional residues by alanine scanning
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Development of laminin receptor agonists: identification of important functional residues by alanine scanning

机译:层粘连蛋白受体激动剂的开发:通过丙氨酸扫描鉴定重要的功能残基

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摘要

An antagonist of cellular adhesion and motility, acetyl-C-[S-Acm]-VIGYSGDRC-[S-Acm]-NH_2 (mEGF_(33-42)), shares homology with the agonist sequence CDPGYIGSR-NH_2. It has been proposed that the latter peptide binds to the high affinity 67 kDa laminin receptor. Both peptides have equal affinities for the receptor and similar conformations have been derived for both. We have examined the importance of individual non-homologous residues with respect to receptor binding and antagonistic properties of mEGF_(33-42). Alanine scanning of non-conserved residues in the N-terminal half of mEGF_(33-42) caused loss of biological activity with respect to cell attachment, receptor binding and migratory response. Substitution of alanine for serine (position 6) caused loss of laminin-specific cell attachment and receptor binding activities. However, the peptide did stimulate migration suggesting that this peptide may be a non-specific stimulator of migration. In contrast, alanine substitution for the C-terminal Cys-S-Acm had no apparent effect on the attachment or receptor binding activities of the peptide but generated an agonist from the antagonist parent. Comparison of the modelled folds of the alanine containing peptides revealed the presence of significant helical content in those peptides capable of stimulating migration and suggests that a reduction in bulk in the N-terminal residues is not conducive to adopting a productive binding conformation.
机译:乙酰-C- [S-Acm] -VIGYSGDRC- [S-Acm] -NH_2(mEGF_(33-42))是细胞粘附和运动的拮抗剂,与激动剂序列CDPGYIGSR-NH_2具有同源性。已经提出了后者的肽与高亲和力的67kDa层粘连蛋白受体结合。两种肽对受体具有相同的亲和力,并且两种肽都获得了相似的构象。我们已经检查了单个非同源残基在受体结合和mEGF_(33-42)拮抗特性方面的重要性。丙氨酸扫描mEGF_(33-42)N端一半中的非保守残基导致细胞附着,受体结合和迁移反应的生物学活性丧失。用丙氨酸替代丝氨酸(第6位)会导致层粘连蛋白特异性细胞附着和受体结合活性丧失。然而,该肽确实刺激了迁移,表明该肽可能是迁移的非特异性刺激物。相比之下,丙氨酸取代C端Cys-S-Acm对肽的附着或受体结合活性没有明显影响,但从拮抗剂亲本产生了激动剂。含丙氨酸的肽的建模倍数的比较显示,在那些能够刺激迁移的肽中存在明显的螺旋含量,并暗示N末端残基体积的减少不利于采用有效的结合构象。

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