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Structures of two elapid snake venom metalloproteases with distinct activities highlight the disulfide patterns in the D domain of ADAMalysin family proteins

机译:两种具有不同活性的蛇毒蛇毒金属蛋白酶的结构突出了ADAMalysin家族蛋白D结构域中的二硫键模式

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摘要

The structures of snake venom metalloproteases (SVMPs) are proposed to be useful models to understand the structural and functional relationship of ADAM (a disintegrin and metalloprotease) which are membrane-anchored proteins involved in multiple human diseases. We have purified, sequenced and determined the structures of two new P-III SVMPs – atragin and kaouthiagin-like (K-like) from . Atragin exhibits a known C-shaped topology, whereas K-like adopts an I-shaped conformation because of the distinct disulfide pattern in the disintegrin-like (D) domain. K-like exhibits an enzymatic specificity toward pro-TNFα with less inhibition of cell migration, but atragin shows the opposite effect. The specificity of the enzymatic activity is indicated to be dominated mainly by the local structures of SVMP in the metalloprotease (M) domain, whereas the hyper-variable region (HVR) in the cysteine-rich (C) domain is involved in a cell-migration activity. We demonstrate also a pH-dependent enzymatic activity of atragin that we correlate with the structural dynamics of a Zn -binding motif and the Met-turn based on the structures determined with a pH-jump method. The structural variations between the C- and I-shapes highlight the disulfide bond patterns in the D domain of the ADAM/adamalysin/reprolysins family proteins.
机译:蛇毒金属蛋白酶(SVMP)的结构被认为是有用的模型,以了解ADAM(一种整合素和金属蛋白酶)的结构和功能关系,ADAM是参与多种人类疾病的膜固定蛋白。我们已经从中纯化,测序并确定了两种新的P-III SVMP的结构-atragin和kaouthiagin-like(K-like)。 Atragin表现出已知的C形拓扑结构,而K形则采用I形构象,因为在整联蛋白样(D)域中存在明显的二硫键模式。 K样对原TNFα表现出酶促特异性,对细胞迁移的抑制作用较小,但是atragin显示出相反的作用。酶活性的特异性主要由金属蛋白酶(M)结构域中SVMP的局部结构决定,而富含半胱氨酸(C)结构域中的高变区(HVR)涉及细胞-迁移活动。我们还证明了atragin的pH依赖性酶促活性,该活性与Zn结合基序的结构动力学和Met-turn相关,该结构基于通过pH跳跃法确定的结构。 C形和I形之间的结构变异突出了ADAM / adamalysin / reprolysins家族蛋白D结构域中的二硫键模式。

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