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在形成瘿瘤的细菌成团泛菌的 III 型效应物 HsvG 和 HsvB 中鉴定核定位信号。

Characterization of nuclear localization signals in the type III effectors HsvG and HsvB of the gall-forming bacterium Pantoea agglomerans.

机构信息

Department of Molecular Biology and Ecology of Plants, Faculty of Life Sciences, Tel-Aviv University, Tel-Aviv 69978, Israel.

Department of Plant Pathology and Weed Research, ARO, The Volcani Center, Bet Dagan 50250, Israel.

出版信息

Microbiology (Reading). 2011 May;157(Pt 5):1500-1508. doi: 10.1099/mic.0.047118-0. Epub 2011 Mar 3.

Abstract

HsvG and HsvB, two paralogous type III effectors of the gall-forming bacteria Pantoea agglomerans pv. gypsophilae and P. agglomerans pv. betae, determine host specificity on gypsophila and beet, respectively. They were previously shown to be DNA-binding proteins imported into host and non-host nuclei and might act as transcriptional activators. Sequence analysis of these effectors did not detect canonical nuclear localization signals (NLSs), but two basic amino acid clusters designated putative NLS1 and NLS2 were detected in their N-terminal and C-terminal regions, respectively. pNIA assay for nuclear import in yeast and bombardment of melon leaves with each of the NLSs fused to a 2xYFP reporter indicated that putative NLS1 and NLS2 were functional in transport of HsvG into the nucleus. A yeast two-hybrid assay showed that HsvB, HsvG, putative NLS1, putative NLS2, HsvG converted into HsvB, or HsvB converted into HsvG by exchanging the repeat domain, all interacted with AtKAP-α and importin-α3 of Arabidopsis thaliana. Deletion analysis of the NLS domains in HsvG suggested that putative NLS1 or NLS2 were required for pathogenicity on gypsophila cuttings and presumably for import of HsvG into the nucleus. This study demonstrates the presence of two functional NLSs in the type III effectors HsvG and HsvB.

摘要

HsvG 和 HsvB 是结瘤菌 Pantoea agglomerans pv. gypsophilae 和 P. agglomerans pv. betae 的两种平行的 III 型效应物,分别决定了对满天星和甜菜的宿主特异性。先前的研究表明,它们是导入宿主和非宿主细胞核的 DNA 结合蛋白,可能作为转录激活剂发挥作用。对这些效应物的序列分析未检测到典型的核定位信号(NLS),但在其 N 端和 C 端区域分别检测到两个碱性氨基酸簇,分别指定为推定的 NLS1 和 NLS2。酵母中的 pNIA 测定法用于核内导入,以及将每个 NLS 融合到 2xYFP 报告基因后用爆炸法轰击甜瓜叶片,表明推定的 NLS1 和 NLS2 可用于将 HsvG 转运到细胞核中。酵母双杂交测定表明,HsvB、HsvG、推定的 NLS1、推定的 NLS2、将 HsvG 转化为 HsvB 或通过交换重复域将 HsvB 转化为 HsvG 的蛋白,均与拟南芥的 AtKAP-α 和 importin-α3 相互作用。HsvG 中 NLS 结构域的缺失分析表明,推定的 NLS1 或 NLS2 对于在满天星插条上的致病性和 HsvG 进入细胞核的导入可能是必需的。本研究证明了 III 型效应物 HsvG 和 HsvB 中存在两个功能 NLS。

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