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Structural Basis for the Regulation of Cysteine-Protease Activity by a New Class of Protease Inhibitors in Plasmodium

机译:疟原虫中新型蛋白酶抑制剂调节半胱氨酸蛋白酶活性的结构基础

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Plasmodium cysteine proteases are essential for host-cell invasion and egress, hemoglobin degradation, and intracellular development of the parasite. The temporal, site-specific regulation of cysteine-protease activity is a prerequisite for survival and propagation of Plasmodium. Recently, a new family of inhibitors of cysteine proteases (ICPs) with homologs in at least eight Plasmodium species has been identified. Here, we report the 2.6 angstrom X-ray crystal structure of the C-terminal, inhibitory domain of ICP from P. berghei (PbICP-C) in a 1:1 complex with falcipain-2, an important hemoglobinase of Plasmodium. The structure establishes Plasmodium ICP as a member of the I42 class of chagasin-like protease inhibitors but with large insertions and differences in the binding mode relative to other family members. Furthermore, the PbICP-C structure explains why host-cell cathepsin B-like proteases and, most likely, also the protease-like domain of Plasmodium SERA5 (serine-repeat antigen 5) are no targets for ICP.
机译:疟原虫半胱氨酸蛋白酶对于宿主细胞的侵入和流出,血红蛋白降解以及寄生虫的细胞内发育至关重要。半胱氨酸蛋白酶活性的时间性,位点特异性调节是疟原虫存活和繁殖的先决条件。最近,已经鉴定了在至少八个疟原虫物种中具有同源物的半胱氨酸蛋白酶(ICP)抑制剂的新家族。在这里,我们报告ICP的C末端抑制域的2.6埃X射线晶体结构,它来自于伯氏疟原虫(PbICP-C)与恶性疟原虫2的重要血红蛋白酶falcipain-2 1:1复合。该结构将疟原虫ICP建立为I42类Chagasin样蛋白酶抑制剂的成员,但相对于其他家族成员而言,插入较大且结合方式不同。此外,PbICP-C结构解释了为什么宿主细胞组织蛋白酶B样蛋白酶以及疟原虫SERA5的蛋白酶样结构域(丝氨酸重复抗原5)为什么不是ICP的目标。

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