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首页> 外文期刊>BMC Microbiology >Heterologous expression and processing of the flavescence dorée phytoplasma variable membrane protein VmpA in Spiroplasma citri
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Heterologous expression and processing of the flavescence dorée phytoplasma variable membrane protein VmpA in Spiroplasma citri

机译:柑橘螺旋体中黄豆浆原体可变膜蛋白VmpA的异源表达和加工

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Background Flavescence dorée (FD) of grapevine is a phloem bacterial disease that threatens European vineyards. The disease is associated with a non-cultivable mollicute, a phytoplasma that is transmitted by the grapevine leafhopper Scaphoideus titanus in a persistent, propagative manner. The specificity of insect transmission is presumably mediated through interactions between the host tissues and phytoplasma surface proteins comprising the so-called variable membrane proteins (Vmps). Plant spiroplasmas and phytoplasmas share the same ecological niches, the phloem sieve elements of host plants and the hemocoel of insect vectors. Unlike phytoplasmas, however, spiroplasmas, and Spiroplasma citri in particular, can be grown in cell-free media and genetically engineered. As a new approach for studying phytoplasmas-insect cell interactions, we sought to mimic phytoplasmas through the construction of recombinant spiroplasmas exhibiting FD phytoplasma Vmps at the cell surface. Results Here, we report the expression of the FD phytoplasma VmpA in S. citri. Transformation of S. citri with plasmid vectors in which the vmpA coding sequence was under the control of the S. citri tuf gene promoter resulted in higher accumulation of VmpA than with the native promoter. Expression of VmpA at the spiroplasma surface was achieved by fusing the vmpA coding sequence to the signal peptide sequence of the S. citri adhesin ScARP3d, as revealed by direct colony immunoblotting and immunogold labelling electron microscopy. Anchoring of VmpA to the spiroplasma membrane was further demonstrated by Triton X-114 protein partitioning and Western immunoblotting. Using the same strategy, the secretion of free, functionally active β-lactamase (used as a model protein) into the culture medium by recombinant spiroplasmas was achieved. Conclusions Construction of recombinant spiroplasmas harbouring the FD phytoplasma variable membrane protein VmpA at their surface was achieved, which provides a new biological approach for studying interactions of phytoplasma surface proteins with host cells. Likewise, the secretion of functional β-lactamase by recombinant spiroplasmas established the considerable promise of the S. citri expression system for delivering phytoplasma effector proteins into host cells.
机译:背景葡萄的黄花病(FD)是一种韧皮部细菌性疾病,威胁着欧洲葡萄园。该疾病与不可耕种的软体动物有关,其是由葡萄叶蝉Scaphoideus titanus以持续的繁殖方式传播的植物原质。推测昆虫传播的特异性是通过宿主组织与包含所谓的可变膜蛋白(Vmps)的植原体表面蛋白之间的相互作用介导的。植物螺旋体和植物质体具有相同的生态位,宿主植物的韧皮部筛分元素和昆虫载体的血丝。但是,与植物质浆菌不同,可以在无细胞培养基中生长螺旋藻,尤其是柠檬螺旋体,并进行基因工程改造。作为研究植物质体-昆虫细胞相互作用的新方法,我们试图通过构建在细胞表面表现出FD植物质体Vmps的重组螺旋体来模拟植物质体。结果在这里,我们报告了FD质体VmpA在柠檬葡萄球菌中的表达。用vmpA编码序列在柠檬链球菌tuf基因启动子控制下的质粒载体转化柠檬链球菌,比天然启动子具有更高的VmpA积累。如直接菌落免疫印迹和免疫金标记电子显微镜所揭示的,通过将vmpA编码序列与柠檬酸链球菌粘附素ScARP3d的信号肽序列融合,可以在螺旋体表面表达VmpA。 Triton X-114蛋白分配和Western免疫印迹进一步证明了VmpA与螺旋体膜的锚定。使用相同的策略,通过重组螺旋体将游离的,具有功能活性的β-内酰胺酶(用作模型蛋白)分泌到培养基中。结论构建了在其表面上携带FD胞质可变膜蛋白VmpA的重组螺旋体,为研究胞质表面蛋白与宿主细胞的相互作用提供了新的生物学途径。同样,重组螺旋体的功能性β-内酰胺酶的分泌建立了柠檬酸链球菌表达系统的巨大前景,该系统可将植物胞质效应蛋白传递到宿主细胞中。

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