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The BC component of ABC toxins is an RHS-repeat-containing protein encapsulation device

机译:ABC毒素的BC成分是一种包含RHS重复序列的蛋白质包封设备

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摘要

The ABC toxin complexes produced by certain bacteria are of interest owing to their potent insecticidal activity(1,2) and potential role in human disease(3). These complexes comprise at least three proteins (A, B and C), which must assemble to be fully toxic(4). The carboxyterminal region of the C protein is the main cytotoxic component(5), and is poorly conserved between different toxin complexes. A general model of action has been proposed, in which the toxin complex binds to the cell surface via the A protein, is endocytosed, and subsequently forms a pH-triggered channel, allowing the translocation of C into the cytoplasm, where it can cause cytoskeletal disruption in both insect and mammalian cells(5). Toxin complexes have been visualized using single-particle electron microscopy(6,7), but no high-resolution structures of the components are available, and the role of the B protein in the mechanism of toxicity remains unknown. Here we report the three-dimensional structure of the complex formed between the B and C proteins, determined to 2.5 angstrom by X-ray crystallography. These proteins assemble to form an unprecedented, large hollow structure that encapsulates and sequesters the cytotoxic, C-terminal region of the C protein like the shell of an egg. The shell is decorated on one end by a beta-propeller domain, which mediates attachment of the B-C heterodimer to the A protein in the native complex. The structure reveals how C auto-proteolyses when folded in complex with B. The C protein is the first example, to our knowledge, of a structure that contains rearrangement hotspot (RHS) repeats(8), and illustrates a marked structural architecture that is probably conserved across both this widely distributed bacterial protein family and the related eukaryotic tyrosine-aspartate (YD)-repeat-containing protein family, which includes the teneurins(9). The structure provides the first clues about the function of these protein repeat families, and suggests a generic mechanism for protein encapsulation and delivery.
机译:某些细菌产生的ABC毒素复合物因其强大的杀虫活性(1,2)和在人类疾病中的潜在作用(3)而备受关注。这些复合物包含至少三种蛋白质(A,B和C),这些蛋白质必须组装后才具有完全毒性(4)。 C蛋白的羧基末端区域是主要的细胞毒性成分(5),在不同的毒素复合物之间保守性很差。已经提出了一种通用的作用模型,其中毒素复合物通过A蛋白结合到细胞表面,被内吞,然后形成pH触发通道,从而使C易位到细胞质中,从而引起细胞骨架破坏昆虫和哺乳动物细胞(5)。毒素复合物已经使用单粒子电子显微镜观察到(6,7),但是没有高分辨率的成分结构,并且B蛋白在毒性机制中的作用仍然未知。在这里,我们报告B和C蛋白之间形成的复合物的三维结构,通过X射线晶体学确定为2.5埃。这些蛋白质组装形成前所未有的大中空结构,该结构将C蛋白的细胞毒性C端区域封装并隔离,就像鸡蛋的外壳一样。外壳的一端装饰有一个β-螺旋结构域,该结构可介导B-C异二聚体与天然复合物中A蛋白的连接。该结构揭示了C与B折叠后如何蛋白水解。据我们所知,C蛋白是包含重排热点(RHS)重复序列的结构的第一个例子(8),并说明了一个显着的结构结构。可能在这个分布广泛的细菌蛋白家族和相关的真核酪氨酸-天冬氨酸(YD)-重复蛋白家族中都保守了,其中包括teneurins(9)。该结构提供了有关这些蛋白质重复家族功能的第一个线索,并提出了蛋白质封装和递送的通用机制。

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