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在设计基质金属蛋白酶底物中使用埃德曼降解序列分析和基质辅助激光解吸/电离质谱法。

Use of Edman degradation sequence analysis and matrix-assisted laser desorption/ionization mass spectrometry in designing substrates for matrix metalloproteinases.

作者信息

Lauer-Fields J L, Nagase H, Fields G B

机构信息

Department of Chemistry and Biochemistry, Florida Atlantic University, Boca Raton 33431-0991, USA.

出版信息

J Chromatogr A. 2000 Aug 18;890(1):117-25. doi: 10.1016/s0021-9673(00)00396-4.

DOI:10.1016/s0021-9673(00)00396-4
PMID:10976799
Abstract

The matrix metalloproteinase (MMP) family has been implicated in the process of a variety of diseases such as arthritis, atherosclerosis, and tumor cell metastasis. We have been designing single-stranded peptides (SSPs) and triple-helical peptides (THPs) as potential discriminatory MMP substrates. Edman degradation sequence and matrix-assisted laser desorption/ionization mass spectrometric (MALDI-MS) analyses of proteolytic activity have been utilized to aid in further substrate design. THP models of the alpha1(I)772-786 sequence from type I collagen were synthesized to examine the triple-helical substrate specificity of MMP family members. Sequence and MALDI-MS analyses were used in conjunction with a fluorometric assay to determine the exact point of cleavage by each MMP. MMP-1 (interstitial collagenase) cleaved the substrates at a single Gly-Ile bond, analogous to the cleavage site in type I collagen. MMP-2 (Mr 72 000 type IV collagenase; gelatinase A) was found to cleave the substrates at two sites, a Gly-Ile bond and a Gly-Gln bond. MMP-3 (stromelysin 1) was found to cleave only one of the substrates after reaction for 48 h. Ultimately, sequence and MALDI-MS analyses allowed us to detect an additional cleavage site for MMP-2 in comparison to MMP-1, while MMP-3 was found to cleave a substrate after an extended time period. The second cleavage site would cause the kinetic parameters for MMP-2 to be overestimated by the fluorometric assay. Further design variations for these substrates need to consider the presence of more stable triple-helical conformation (to eliminate MMP-3 binding) and the removal of Gly-Gln bonds that may be susceptible to MMP-2.

摘要

基质金属蛋白酶(MMP)家族与多种疾病的发生发展过程有关,如关节炎、动脉粥样硬化和肿瘤细胞转移。我们一直在设计单链肽(SSP)和三螺旋肽(THP)作为潜在的特异性MMP底物。利用埃德曼降解序列分析和基质辅助激光解吸/电离质谱(MALDI-MS)分析蛋白水解活性,以辅助进一步的底物设计。合成了I型胶原α1(I)772 - 786序列的THP模型,以研究MMP家族成员的三螺旋底物特异性。序列分析和MALDI-MS分析与荧光测定法结合使用,以确定每种MMP的精确切割位点。MMP-1(间质胶原酶)在单个Gly-Ile键处切割底物,类似于I型胶原中的切割位点。发现MMP-2(72 000分子量的IV型胶原酶;明胶酶A)在两个位点切割底物,一个Gly-Ile键和一个Gly-Gln键。发现MMP-3(基质溶解素1)在反应48小时后仅切割其中一种底物。最终,序列分析和MALDI-MS分析使我们能够检测到与MMP-1相比MMP-2的另一个切割位点,而发现MMP-3在延长的时间段后切割一种底物。第二个切割位点会导致荧光测定法高估MMP-2的动力学参数。这些底物的进一步设计变体需要考虑存在更稳定的三螺旋构象(以消除MMP-3结合)以及去除可能易受MMP-2作用的Gly-Gln键。

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