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A common allosteric site and mechanism in caspases

机译:半胱氨酸蛋白酶的常见变构位点和机制

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We present a common allosteric mechanism for control of inflammatory and apoptotic caspases. Highly specific thiol-containing inhibitors of the human inflammatory caspase-1 were identified by using disulficle trapping, a method for site-directed small-molecule discovery. These compounds became trapped by forming a disulfide bond with a cysteine residue in the cavity at the dimer interface -15 A away from the active site. Mutational and structural analysis uncovered a linear circuit of functional residues that runs from one active site through the allosteric cavity and into the second active site. Kinetic analysis revealed robust positive cooperativity not seen in other endopeptidases. Recently, disulficle trapping identified a similar small-molecule site and allosteric transition in the apoptotic caspase-7 that shares only a 23% sequence identity with caspase-1. Together, these studies show a general small-molecule-binding site for functionally reversing the zymogen activation of caspases and suggest a common regulatory site for the allosteric control of inflammation and apoptosis.
机译:我们提出了一种常见的变构机制,以控制炎症和凋亡的胱天蛋白酶。通过使用二硫键捕集(一种定点小分子发现的方法),鉴定了人类炎性胱天蛋白酶-1的高度特异性的含硫醇的抑制剂。这些化合物通过与半胱氨酸残基在远离活性部位的二聚体界面-15 A处的空腔中形成一个半胱氨酸残基而被捕获。突变和结构分析揭示了功能性残基的线性回路,该残基从一个活性位点穿过变构腔进入第二个活性位点。动力学分析揭示了其他肽链内切酶未见的强阳性协同作用。最近,二硫键捕获法在凋亡的caspase-7中发现了类似的小分子位点和变构过渡,与caspase-1仅具有23%的序列同一性。总之,这些研究显示了一个通用的小分子结合位点,可在功能上逆转半胱氨酸蛋白酶的酶原激活作用,并提出了炎症和凋亡的变构控制的通用调控位点。

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