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首页> 外文期刊>Frontiers in Microbiology >Identification of the Autochaperone Domain in the Type Va Secretion System (T5aSS): Prevalent Feature of Autotransporters with a β-Helical Passenger
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Identification of the Autochaperone Domain in the Type Va Secretion System (T5aSS): Prevalent Feature of Autotransporters with a β-Helical Passenger

机译:Va分泌系统(T5aSS)中自伴分子域的识别:具有β螺旋乘客的自转运蛋白的普遍特征。

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Autotransporters (ATs) belong to a family of modular proteins secreted by the Type V, subtype a, secretion system (T5aSS) and considered as an important source of virulence factors in lipopolysaccharidic diderm bacteria (archetypical Gram-negative bacteria). While exported by the Sec pathway, the ATs are further secreted across the outer membrane via their own C-terminal translocator forming a β-barrel, through which the rest of the protein, namely the passenger, can pass. In several ATs, an autochaperone domain (AC) present at the C-terminal region of the passenger and upstream of the translocator was demonstrated as strictly required for proper secretion and folding. However, considering it was functionally characterised and identified only in a handful of ATs, wariness recently fells on the commonality and conservation of this structural element in the T5aSS. To circumvent the issue of sequence divergence and taking advantage of the resolved three-dimensional structure of some ACs, identification of this domain was performed following structural alignment among all AT passengers experimentally resolved by crystallography before searching in a dataset of 1523 ATs. While demonstrating that the AC is indeed a conserved structure found in numerous ATs, phylogenetic analysis further revealed a distribution into deeply rooted branches, from which emerge 20 main clusters. Sequence analysis revealed that an AC could be identified in the large majority of SAATs (self-associating ATs) but not in any LEATs (lipase/esterase ATs) nor in some PATs (protease autotransporters) and PHATs (phosphatase/hydrolase ATs). Structural analysis indicated that an AC was present in passengers exhibiting single-stranded right-handed parallel β-helix, whatever the type of β-solenoid, but not with α-helical globular fold. From this investigation, the AC of type 1 appears as a prevalent and conserved structural element exclusively associated to β-helical AT passenger and should promote further studies about the protein secretion and folding via the T5aSS, especially toward α-helical AT passengers.
机译:自转运蛋白(AT)属于V型,a型,分泌系统(T5aSS)分泌的模块蛋白家族,被认为是脂多糖双体细菌(典型革兰氏阴性细菌)中毒力因子的重要来源。当通过Sec途径输出时,AT通过其自身的C末端转运蛋白进一步分泌穿过外膜,形成一个β桶,其余的蛋白质(即乘客)可以通过。在几个AT中,证明了存在于乘客C末端区域和易位子上游的自伴分子域(AC)是正确分泌和折叠的严格要求。但是,考虑到仅在少数几个AT中才对其进行了功能表征和识别,因此最近对T5aSS中该结构元素的通用性和保守性有所警惕。为了避免序列发散的问题并利用某些AC的解析三维结构,在搜索1523个AT数据集之前,通过晶体学实验解析的所有AT乘客之间的结构比对后,对该域进行了鉴定。在证明AC确实是在许多AT中发现的保守结构后,系统发育分析进一步揭示了其分布到根深蒂固的分支中,从中出现了20个主要簇。序列分析显示,可以在大多数SAAT(自缔合AT)中鉴定出AC,但在任何LEAT(脂肪酶/酯酶AT)中或某些PAT(蛋白酶自转运蛋白)和PHAT(磷酸酶/水解酶AT)中均不能鉴定出AC。结构分析表明,在乘客中,无论是哪种类型的电磁阀,都表现出单链右旋平行β-螺旋结构,但不具有α-螺旋球状褶皱。通过这项研究,类型1的AC似乎是普遍与保守的结构元素,仅与β螺旋AT乘客有关,应该促进通过T5aSS尤其是对α螺旋AT乘客的蛋白质分泌和折叠的进一步研究。

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