Huxley-Jones Julie, Apte Suneel S, Robertson David L, Boot-Handford Raymond P
Wellcome Trust Centre for Cell-Matrix Research, Michael Smith Building, Faculty of Life Sciences, University of Manchester, UK.
Int J Biochem Cell Biol. 2005 Sep;37(9):1838-45. doi: 10.1016/j.biocel.2005.03.009.
ADAMTS, constituting a recently discovered family of secreted zinc-dependent metalloproteases, have been shown to have critical physiological roles through identification of a number of natural animal and human gene mutations. The identification of six ADAMTS genes in the basal chordate Ciona intestinalis provides new insight into how, when and in what order the vertebrate orthologues have evolved. The phylogenetic assignments, based on sequences conserved across all genes, are supported by conserved domain structures within defined sub-families. The phylogeny and the frequent localisation of ADAMTS genes in paralogous regions of the genome are consistent with the vertebrate lineages having arisen by large scale or genome duplication. The high level of conservation in the protease active site of vertebrate orthologues within some sub-families suggests subfunctionalisation, whereas the greater divergence in others would favour the evolution of novel substrate specificities and these observations are borne-out where substrate-specificity is known. The expansion and sub-specialization of the ADAMTS family is a component of the increased complexity of extracellular matrix that is associated with the evolution of vertebrates.
ADAMTS是最近发现的一个分泌型锌依赖性金属蛋白酶家族,通过对一些天然动物和人类基因突变的鉴定,已显示出其具有关键的生理作用。在基部脊索动物海鞘中鉴定出六个ADAMTS基因,这为脊椎动物直系同源基因的进化方式、时间和顺序提供了新的见解。基于所有基因中保守序列的系统发育归属,得到了特定亚家族内保守结构域结构的支持。ADAMTS基因在基因组旁系同源区域的系统发育和频繁定位与脊椎动物谱系通过大规模或基因组复制产生的情况一致。一些亚家族中脊椎动物直系同源基因蛋白酶活性位点的高度保守表明了亚功能化,而其他亚家族中更大的差异则有利于新底物特异性的进化,并且在已知底物特异性的情况下证实了这些观察结果。ADAMTS家族的扩展和亚专业化是与脊椎动物进化相关的细胞外基质复杂性增加的一个组成部分。