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人成纤维细胞活化蛋白α底物特异性的结构与动力学分析

Structural and kinetic analysis of the substrate specificity of human fibroblast activation protein alpha.

作者信息

Aertgeerts Kathleen, Levin Irena, Shi Lihong, Snell Gyorgy P, Jennings Andy, Prasad G Sridhar, Zhang Yanming, Kraus Michelle L, Salakian Shant, Sridhar Vandana, Wijnands Robert, Tennant Mike G

机构信息

Takeda San Diego, Inc., California 92121, USA.

出版信息

J Biol Chem. 2005 May 20;280(20):19441-4. doi: 10.1074/jbc.C500092200. Epub 2005 Apr 4.

Abstract

Fibroblast activation protein alpha (FAPalpha) is highly expressed in epithelial cancers and has been implicated in extracellular matrix remodeling, tumor growth, and metastasis. We present the first high resolution structure for the apoenzyme as well as kinetic data toward small dipeptide substrates. FAPalpha exhibits a dipeptidyl peptidase IV (DPPIV)-like fold, featuring an alpha/beta-hydrolase domain and an eight-bladed beta-propeller domain. Known DPPIV dipeptides are cleaved by FAPalpha with an approximately 100-fold decrease in catalytic efficiency compared with DPPIV. Moreover, FAPalpha, but not DPPIV, possesses endopeptidase activity toward N-terminal benzyloxycarbonyl (Z)-blocked peptides. Comparison of the crystal structures of FAPalpha and DPPIV revealed one major difference in the vicinity of the Glu motif (Glu(203)-Glu(204) for FAPalpha; Glu(205)-Glu(206) for DPPIV) within the active site of the enzyme. Ala(657) in FAPalpha, instead of Asp(663) as in DP-PIV, reduces the acidity in this pocket, and this change could explain the lower affinity for N-terminal amines by FAPalpha. This hypothesis was tested by kinetic analysis of the mutant FAPalpha/A657D, which shows on average an approximately 60-fold increase in the catalytic efficiency, as measured by k(cat)/K(m), for the cleavage of dipeptide substrates. Furthermore, the catalytic efficiency of the mutant is reduced by approximately 350-fold for cleavage of Z-Gly-Pro-7-amino-4-methylcoumarin. Our data provide a clear understanding of the molecular determinants responsible for the substrate specificity and endopeptidase activity of FAPalpha.

摘要

成纤维细胞活化蛋白α(FAPα)在上皮癌中高表达,并与细胞外基质重塑、肿瘤生长和转移有关。我们展示了该酶的首个高分辨率结构以及针对小肽底物的动力学数据。FAPα呈现出二肽基肽酶IV(DPPIV)样折叠结构,具有一个α/β水解酶结构域和一个八叶β-螺旋桨结构域。已知的DPPIV二肽被FAPα切割时,与DPPIV相比催化效率下降约100倍。此外,FAPα而非DPPIV对N端苄氧羰基(Z)封闭的肽具有内肽酶活性。FAPα和DPPIV晶体结构的比较揭示了在酶活性位点内Glu基序附近(FAPα为Glu(203)-Glu(204);DPPIV为Glu(205)-Glu(206))存在一个主要差异。FAPα中的Ala(657)而非DPPIV中的Asp(663)降低了该口袋的酸度,这种变化可以解释FAPα对N端胺的亲和力较低。通过对突变体FAPα/A657D的动力学分析验证了这一假设,该突变体对二肽底物切割的催化效率(以k(cat)/K(m)衡量)平均增加约60倍。此外,对于Z-Gly-Pro-7-氨基-4-甲基香豆素的切割,突变体的催化效率降低约350倍。我们的数据清楚地阐明了决定FAPα底物特异性和内肽酶活性的分子决定因素。

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