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Identification of preferred substrate sequences for transglutaminase 1--development of a novel peptide that can efficiently detect cross-linking enzyme activity in the skin

机译:鉴定转谷氨酰胺酶1的优选底物序列-开发可以有效检测皮肤中交联酶活性的新型肽

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摘要

Transglutaminase 1 (TGase 1) is an essential enzyme for cornified envelope formation in stratified squamous epithelia. This enzyme catalyzes the cross-linking of glutamine and lysine residues in structural proteins in differentiating keratinocytes. To gain insight into the preferred substrate structure of TGase 1, we used a phage-displayed random peptide library to screen primary amino acid sequences that are preferentially selected by human TGase 1. The peptides selected as glutamine donor substrate exhibited a marked tendency in primary structure, conforming to the sequence: QxK/RpsixxxWP (where x and psi represent non-conserved and hydrophobic amino acids, respectively). Using glutathione S-transferase (GST) fusion proteins of the selected peptides, we identified several sequences as preferred substrates and confirmed that they were isozyme-specific. We generated GST-fused alanine mutants of the most reactive sequence (K5) to determine the residues that were critical for reactivity. Even in peptide form, K5 appeared to have high and specific reactivity as substrate. In situ analysis of mouse skin sections using fluorescence-conjugated K5 peptide resulted in detection of TGase 1 activity with high sensitivity, but no signal was detected in a TGase 1-null mouse. In conclusion, we were successful in generating a novel substrate peptide for sensitive detection of endogenous TGase 1 activity in the skin.
机译:转谷氨酰胺酶1(TGase 1)是分层鳞状上皮中形成角化包膜的必需酶。该酶催化分化角质形成细胞中结构蛋白中的谷氨酰胺和赖氨酸残基的交联。为了深入了解TGase 1的优选底物结构,我们使用了噬菌体展示的随机肽库来筛选人TGase 1优先选择的一级氨基酸序列。被选作谷氨酰胺供体底物的肽在一级结构中表现出明显的趋势,符合序列:QxK / RpsixxxWP(其中x和psi分别代表非保守和疏水氨基酸)。使用所选肽的谷胱甘肽S-转移酶(GST)融合蛋白,我们确定了几个序列作为优选的底物,并确认它们是同工酶特异性的。我们生成了具有最高反应性序列(K5)的GST融合的丙氨酸突变体,以确定对反应至关重要的残基。即使是肽形式,K5似乎也具有高特异性的底物反应性。使用荧光偶联的K5肽对小鼠皮肤切片进行原位分析可检测到高灵敏度的TGase 1活性,但在无TGase 1的小鼠中未检测到信号。总之,我们成功地产生了一种新型底物肽,用于敏感检测皮肤中的内源性TGase 1活性。

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