Massova I, Kotra L P, Fridman R, Mobashery S
Department of Chemistry, and Karmanos Cancer Institute, Wayne State University, Detroit, Michigan 48202-3489, USA.
FASEB J. 1998 Sep;12(12):1075-95.
A comprehensive sequence alignment of 64 members of the family of matrix metalloproteinases (MMPs) for the entire sequences, and subsequently the catalytic and the hemopexin-like domains, have been performed. The 64 MMPs were selected from plants, invertebrates, and vertebrates. The analyses disclosed that as many as 23 distinct subfamilies of these proteins are known to exist. Information from the sequence alignments was correlated with structures, both crystallographic as well as computational, of the catalytic domains for the 23 representative members of the MMP family. A survey of the metal binding sites and two loops containing variable sequences of amino acids, which are important for substrate interactions, are discussed. The collective data support the proposal that the assembly of the domains into multidomain enzymes was likely to be an early evolutionary event. This was followed by diversification, perhaps in parallel among the MMPs, in a subsequent evolutionary time scale. Analysis indicates that a retrograde structure simplification may have accounted for the evolution of MMPs with simple domain constituents, such as matrilysin, from the larger and more elaborate enzymes.
已对基质金属蛋白酶(MMPs)家族的64个成员的完整序列进行了全面的序列比对,随后对催化结构域和血色素结合蛋白样结构域进行了比对。这64个MMPs选自植物、无脊椎动物和脊椎动物。分析表明,已知这些蛋白质存在多达23个不同的亚家族。序列比对信息与MMP家族23个代表性成员催化结构域的晶体结构和计算结构相关联。讨论了对金属结合位点以及两个含有可变氨基酸序列的环的研究,这两个环对底物相互作用很重要。这些汇总数据支持以下观点:结构域组装成多结构域酶可能是早期的进化事件。随后在随后的进化时间尺度上发生了多样化,可能在MMPs之间并行发生。分析表明,逆行结构简化可能解释了具有简单结构域组成的MMPs(如基质溶素)从更大、更复杂的酶进化而来的过程。