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四分之一:农杆菌中的 HspL 而不是其他小热休克蛋白作为有效的促进毒力的 VirB8 伴侣蛋白。

One out of four: HspL but no other small heat shock protein of Agrobacterium tumefaciens acts as efficient virulence-promoting VirB8 chaperone.

机构信息

Institute of Plant and Microbial Biology, Academia Sinica, Taipei, Taiwan.

出版信息

PLoS One. 2012;7(11):e49685. doi: 10.1371/journal.pone.0049685. Epub 2012 Nov 21.

Abstract

Alpha-crystallin-type small heat shock proteins (sHsps) are ubiquitously distributed in most eukaryotes and prokaryotes. Four sHsp genes named hspL, hspC, hspAT1, and hspAT2 were identified in Agrobacterium tumefaciens, a plant pathogenic bacterium capable of unique interkingdom DNA transfer via type IV secretion system (T4SS). HspL is highly expressed in virulence-induced growth condition and functions as a VirB8 chaperone to promote T4SS-mediated DNA transfer. Here, we used genetic and biochemical approaches to investigate the involvement of the other three sHsps in T4SS and discovered the molecular basis underlying the dominant function of HspL in promoting T4SS function. While single deletion of hspL but no other sHsp gene reduced T4SS-mediated DNA transfer and tumorigenesis efficiency, additional deletion of other sHsp genes in the hspL deletion background caused synergistic effects in the virulence phenotypes. This is correlated with the high induction of hspL and only modest increase of hspC, hspAT1, and hspAT2 at their mRNA and protein abundance in virulence-induced growth condition. Interestingly, overexpression of any single sHsp gene alone in the quadruple mutant caused increased T4SS-mediated DNA transfer and tumorigenesis. Thermal aggregation protecting assays in vitro indicated that all four sHsps exhibit chaperone activity for the model substrate citrate synthase but only HspL functions as efficient chaperone for VirB8. The higher VirB8 chaperone activity of HspL was also demonstrated in vivo, in which lower amounts of HspL than other sHsps were sufficient in maintaining VirB8 homeostasis in A. tumefaciens. Domain swapping between HspL and HspAT2 indicated that N-terminal, central alpha-crystallin, and C-terminal domains of HspL all contribute to HspL function as an efficient VirB8 chaperone. Taken together, we suggest that the dominant role of HspL in promoting T4SS function is based on its higher expression in virulence-induced condition and its more efficient VirB8 chaperone activity as compared to other sHsps.

摘要

α-晶体蛋白型小分子热休克蛋白(sHsps)广泛分布于大多数真核生物和原核生物中。在能够通过 IV 型分泌系统(T4SS)进行独特的跨物种 DNA 转移的植物病原细菌根瘤农杆菌中,鉴定出了 4 个 sHsp 基因,分别命名为 hspL、hspC、hspAT1 和 hspAT2。HspL 在诱导毒力的生长条件下高度表达,作为 VirB8 伴侣蛋白发挥作用,促进 T4SS 介导的 DNA 转移。在这里,我们使用遗传和生化方法研究了其他三种 sHsps 参与 T4SS 的情况,并发现了 HspL 在促进 T4SS 功能方面的主要功能的分子基础。虽然 hspL 的单一缺失,但没有其他 sHsp 基因减少了 T4SS 介导的 DNA 转移和肿瘤发生效率,但在 hspL 缺失背景下额外缺失其他 sHsp 基因导致毒力表型的协同效应。这与 hspL 的高诱导相关,而在诱导生长条件下,hspC、hspAT1 和 hspAT2 的 mRNA 和蛋白丰度仅适度增加。有趣的是,在四重突变体中单独过表达任何单个 sHsp 基因都会导致 T4SS 介导的 DNA 转移和肿瘤发生增加。体外热聚集保护实验表明,所有四种 sHsps 都对模型底物柠檬酸合酶具有伴侣活性,但只有 HspL 作为 VirB8 的有效伴侣蛋白发挥作用。在体内也证明了 HspL 对 VirB8 的更高的伴侣活性,其中 HspL 的量低于其他 sHsps,足以维持根瘤农杆菌中 VirB8 的体内平衡。HspL 与 HspAT2 之间的结构域交换表明,HspL 的 N 端、中心α-晶体蛋白和 C 端结构域都有助于 HspL 作为有效的 VirB8 伴侣蛋白发挥作用。总之,我们认为 HspL 在促进 T4SS 功能方面的主导作用是基于其在诱导毒力的条件下的高表达以及与其他 sHsps 相比其更有效的 VirB8 伴侣活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72db/3504140/3188f86e4162/pone.0049685.g001.jpg

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