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Size and Conformation Limits to Secretion of Disulfide-bonded Loops in Autotransporter Proteins

机译:用于自同种植体蛋白质中二硫键环的分泌的尺寸和构象限制

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Autotransporters are a superfamily of virulence factors typified by a channel-forming C terminus that facilitates translocation of the functional N-terminal passenger domain across the outer membrane of Gram-negative bacteria. This final step in the secretion of autotransporters requires a translocation-competent conformation for the passenger domain that differs markedly from the structure of the fully folded secreted protein. The nature of the translocation-competent conformation remains controversial, in particular whether the passenger domain can adopt secondary structural motifs, such as disulfide-bonded segments, while maintaining a secretion-competent state. Here, we used the endogenous and closely spaced cysteine residues of the plasmid-encoded toxin (Pet) from enteroaggregative Escherichia coli to investigate the effect of disulfide bond-induced folding on translocation of an autotransporter passenger domain. We reveal that rigid structural elements within disulfide-bonded segments are resistant to autotransporter-mediated secretion. We define the size limit of disulfide-bonded segments tolerated by the autotransporter system demonstrating that, when present, cysteine pairs are intrinsically closely spaced to prevent congestion of the translocator pore by large disulfide-bonded regions. These latter data strongly support the hairpin mode of autotransporter biogenesis.
机译:自动转换器是由沟道形成C末端代表的毒力因子的超家族,其有助于在革兰氏阴性细菌的外膜上倾斜功能的n末端乘客域。自动转运者分泌的该最后一步需要对乘客域的易位态度构象,其与完全折叠的分泌蛋白的结构不同。易位竞争力构象的性质仍然存在争议,特别是乘客区是否可以采用二级结构基序,例如二硫键键的段,同时保持分泌主管状态。在这里,我们使用来自肠烧成大肠杆菌的质粒编码毒素(PET)的内源性和紧密间隔的半胱氨酸残基,以研究二硫键粘合诱导的折叠对自动转换器乘客域的易位的影响。我们揭示二硫键段内的刚性结构元素耐受自输聚体介导的分泌。我们定义了通过用于自动转换器系统可容许的二硫键段的大小限制,示范性,当存在时,半胱氨酸对本质上紧密地间隔,以防止通过大二硫键的粘合区域来阻止易燃器孔的充血。后一种数据强烈支持自同种植体生物发生的发夹模式。

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