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用于转谷氨酰胺酶2的高效谷氨酰胺供体底物肽的噬菌体展示筛选

Phage display selection of efficient glutamine-donor substrate peptides for transglutaminase 2.

作者信息

Keresztessy Zsolt, Csosz Eva, Hársfalvi Jolán, Csomós Krisztián, Gray Joe, Lightowlers Robert N, Lakey Jeremy H, Balajthy Zoltán, Fésüs László

机构信息

Institute for Cell and Molecular Biosciences, University of Newcastle upon Tyne, Newcastle upon Tyne NE2 4HH, United Kingdom.

出版信息

Protein Sci. 2006 Nov;15(11):2466-80. doi: 10.1110/ps.051818406.

Abstract

Understanding substrate specificity and identification of natural targets of transglutaminase 2 (TG2), the ubiquitous multifunctional cross-linking enzyme, which forms isopeptide bonds between protein-linked glutamine and lysine residues, is crucial in the elucidation of its physiological role. As a novel means of specificity analysis, we adapted the phage display technique to select glutamine-donor substrates from a random heptapeptide library via binding to recombinant TG2 and elution with a synthetic amine-donor substrate. Twenty-six Gln-containing sequences from the second and third biopanning rounds were susceptible for TG2-mediated incorporation of 5-(biotinamido)penthylamine, and the peptides GQQQTPY, GLQQASV, and WQTPMNS were modified most efficiently. A consensus around glutamines was established as pQX(P,T,S)l, which is consistent with identified substrates listed in the TRANSDAB database. Database searches showed that several proteins contain peptides similar to the phage-selected sequences, and the N-terminal glutamine-rich domain of SWI1/SNF1-related chromatin remodeling proteins was chosen for detailed analysis. MALDI/TOF and tandem mass spectrometry-based studies of a representative part of the domain, SGYGQQGQTPYYNQQSPHPQQQQPPYS (SnQ1), revealed that Q(6), Q(8), and Q(22) are modified by TG2. Kinetic parameters of SnQ1 transamidation (K(M)(app) = 250 microM, k(cat) = 18.3 sec(-1), and k(cat)/K(M)(app) = 73,200) classify it as an efficient TG2 substrate. Circular dichroism spectra indicated that SnQ1 has a random coil conformation, supporting its accessibility in the full-length parental protein. Added together, here we report a novel use of the phage display technology with great potential in transglutaminase research.

摘要

转谷氨酰胺酶2(TG2)是一种普遍存在的多功能交联酶,可在蛋白质连接的谷氨酰胺和赖氨酸残基之间形成异肽键。了解其底物特异性并鉴定其天然靶点对于阐明其生理作用至关重要。作为一种新型的特异性分析方法,我们采用噬菌体展示技术,通过与重组TG2结合并用合成胺供体底物洗脱,从随机七肽库中筛选谷氨酰胺供体底物。第二轮和第三轮生物淘选获得的26个含谷氨酰胺序列可被TG2介导掺入5-(生物素酰胺基)戊胺,其中肽GQQQTPY、GLQQASV和WQTPMNS的修饰效率最高。确定了谷氨酰胺周围的共有序列为pQX(P,T,S)l,这与TRANSDAB数据库中列出的已鉴定底物一致。数据库搜索显示,几种蛋白质含有与噬菌体选择序列相似的肽段,我们选择了SWI1/SNF1相关染色质重塑蛋白的富含谷氨酰胺的N端结构域进行详细分析。基于基质辅助激光解吸/电离飞行时间(MALDI/TOF)和串联质谱对该结构域的代表性部分SGYGQQGQTPYYNQQSPHPQQQQPPYS(SnQ1)的研究表明,Q(6)、Q(8)和Q(22)可被TG2修饰。SnQ1转酰胺化的动力学参数(K(M)(app)=250μM,k(cat)=18.3秒(-1),k(cat)/K(M)(app)=73,200)表明它是一种高效的TG2底物。圆二色光谱表明SnQ1具有无规卷曲构象,这支持了它在全长亲本蛋白中的可及性。综上所述,我们在此报道了噬菌体展示技术在转谷氨酰胺酶研究中具有巨大潜力的新用途。

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