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Structural basis for Ca~(2+)-independence and activation by homodimerization of tomato subtilase 3

机译:Ca〜(2 +)-依赖性和番茄枯草蛋白酶3均二聚激活的结构基础

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摘要

Subtilases are serine proteases found in Archae, Bacteria, yeasts, and higher eukaryotes. Plants possess many more of these subtilisin-like endopeptidases than animals, e.g., 56 identified genes in Arabidopsis compared with only 9 in humans, indicating important roles for subtilases in plant biology. We report the first structure of a plant subtilase, SBT3 from tomato, in the active apo form and complexed with a chloromethylketone (cmk) inhibitor. The domain architecture comprises an N-terminal protease domain displaying a 132 aa protease-associated (PA) domain insertion and a C-terminal seven-stranded jelly-roll fibronectin (Fn) Ill-like domain. We present the first structural evidence for an explicit function of PA domains in proteases revealing a vital role in the homo-dimerization of SBT3 and in enzyme activation. Although Ca~(2+)-binding sites are conserved and critical for stability in other subtilases, SBT3 was found to be Ca~(2+)-free and its thermo stability is Ca~(2+)-independent.
机译:枯草蛋白酶是在古细菌,细菌,酵母和高等真核生物中发现的丝氨酸蛋白酶。植物比动物拥有更多的枯草杆菌蛋白酶样内肽酶,例如,拟南芥中有56种已鉴定的基因,而人类只有9种,表明枯草杆菌酶在植物生物学中的重要作用。我们报道了植物枯草蛋白酶的第一个结构,来自番茄的SBT3,呈活性载脂蛋白形式,并与氯甲基酮(cmk)抑制剂复合。该结构域结构包含展示132 aa蛋白酶相关(PA)结构域插入的N末端蛋白酶结构域和一个C末端七链果冻纤连蛋白(Fn)Ill样结构域。我们提出了PA结构域在蛋白酶中的明确功能的第一个结构证据,揭示了SBT3的同型二聚化和酶激活中的重要作用。尽管Ca〜(2+)的结合位点是保守的,并且对于其他枯草蛋白酶的稳定性至关重要,但SBT3被发现不含Ca〜(2+),其热稳定性与Ca〜(2+)无关。

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