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Structure interdomain dynamics and pH-dependent autoactivation of pro-rhodesain the main lysosomal cysteine protease from African trypanosomes

机译:促洛奇斯的主要溶酶体半胱氨酸蛋白酶的结构互补动态和pH依赖性自动激活

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摘要

Rhodesain is the lysosomal cathepsin L-like cysteine protease of Trypanosoma brucei rhodesiense, the causative agent of Human African Trypanosomiasis. The enzyme is essential for the proliferation and pathogenicity of the parasite as well as its ability to overcome the blood–brain barrier of the host. Lysosomal cathepsins are expressed as zymogens with an inactivating prodomain that is cleaved under acidic conditions. A structure of the uncleaved maturation intermediate from a trypanosomal cathepsin L-like protease is currently not available. We thus established the heterologous expression of T. brucei rhodesiense pro-rhodesain in Escherichia coli and determined its crystal structure. The trypanosomal prodomain differs from nonparasitic pro-cathepsins by a unique, extended α-helix that blocks the active site and whose side-chain interactions resemble those of the antiprotozoal inhibitor K11777. Interdomain dynamics between pro- and core protease domain as observed by photoinduced electron transfer fluorescence correlation spectroscopy increase at low pH, where pro-rhodesain also undergoes autocleavage. Using the crystal structure, molecular dynamics simulations, and mutagenesis, we identify a conserved interdomain salt bridge that prevents premature intramolecular cleavage at higher pH values and may thus present a control switch for the observed pH sensitivity of proenzyme cleavage in (trypanosomal) CathL-like proteases.
机译:RhodeSain是赖斯莫纳蛋白酶L样半胱氨酸蛋白酶蛋白酶瘤葡萄球菌罗西酮,人类非洲锥虫病的致病剂。酶对于寄生虫的增殖和致病性以及克服宿主血脑屏障的能力至关重要。溶酶体表达素表示为具有灭活前蛋白的酶的酶,其在酸性条件下切割。目前不可用来自锥体蛋白酶体L样蛋白L样蛋白的未切割成熟的中间体的结构。因此,我们在大肠杆菌中建立了T.Brucei Rhodesieense Pro-Rhodeain的异源表达并确定了其晶体结构。促锥体前蛋白通过独特的延伸的α-螺旋与非嗜磷型α-螺旋不同,其阻断活性位点,其侧链相互作用类似于反气化抑制剂K11777。通过光致电子转移荧光相关光谱在低pH下观察到的核和核蛋白酶域之间的互常量动力学,其中Pro-RhodeSain也经历了自闭症。使用晶体结构,分子动力学模拟和诱变,我们鉴定了一种保守的跨型盐桥,其防止更早的pH值髓分子切割,因此可以提出用于观察到的pH值(锥体瘤瘤)CANKL样的pH敏感性的控制开关蛋白酶。

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