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The Plasmodesmal Localization Signal of TMV MP Is Recognized by Plant Synaptotagmin SYTA

机译:植物突触素SYTA识别TMV MP的等离子定位信号

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ABSTRACT Plant viruses cross the barrier of the plant cell wall by moving through intercellular channels, termed plasmodesmata, to invade their hosts. They accomplish this by encoding movement proteins (MPs), which act to alter plasmodesmal gating. How MPs target to plasmodesmata is not well understood. Our recent characterization of the first plasmodesmal localization signal (PLS) identified in a viral MP, namely, the MP encoded by the Tobamovirus Tobacco mosaic virus (TMV), now provides the opportunity to identify host proteins that recognize this PLS and may be important for its plasmodesmal targeting. One such candidate protein is Arabidopsis synaptotagmin A (SYTA), which is required to form endoplasmic reticulum (ER)-plasma membrane contact sites and regulates the MP-mediated trafficking of begomoviruses, tobamoviruses, and potyviruses. In particular, SYTA interacts with, and regulates the cell-to-cell transport of, both TMV MP and the MP encoded by the Tobamovirus Turnip vein clearing virus (TVCV). Using in planta bimolecular fluorescence complementation (BiFC) and yeast two-hybrid assays, we show here that the TMV PLS interacted with SYTA. This PLS sequence was both necessary and sufficient for interaction with SYTA, and the plasmodesmal targeting activity of the TMV PLS was substantially reduced in an Arabidopsis syta knockdown line. Our findings show that SYTA is one host factor that can recognize the TMV PLS and suggest that this interaction may stabilize the association of TMV MP with plasmodesmata. IMPORTANCE Plant viruses use their movement proteins (MPs) to move through host intercellular connections, plasmodesmata. Perhaps one of the most intriguing, yet least studied, aspects of this transport is the MP signal sequences and their host recognition factors. Recently, we have described the plasmodesmal localization signal (PLS) of the Tobacco mosaic virus (TMV) MP. Here, we identified the Arabidopsis synaptotagmin A (SYTA) as a host factor that recognizes TMV MP PLS and promotes its association with the plasmodesmal membrane. The significance of these findings is two-fold: (i) we identified the TMV MP association with the cell membrane at plasmodesmata as an important PLS-dependent step in plasmodesmal targeting, and (ii) we identified the plant SYTA protein that specifically recognizes PLS as a host factor involved in this step.
机译:摘要植物病毒通过穿过称为胞浆菌的胞间通道侵入其宿主,从而越过植物细胞壁的屏障。他们通过编码运动蛋白(MPs)来实现此目的,该蛋白可改变胞体门控。 MP如何靶向纤毛虫并不清楚。我们最近对病毒MP中鉴定的第一个胞浆定位信号(PLS)的表征,即由烟草花叶病毒烟草花叶病毒(TMV)编码的MP,现在提供了机会来识别识别该PLS的宿主蛋白,这可能对其胞质靶向。一种这样的候选蛋白是拟南芥突触结合蛋白A(SYTA),它需要形成内质网(ER)-质膜接触位点,并调节MP介导的贝莫病毒,烟草花叶病毒和杯状病毒的运输。特别是,SYTA与TMV MP和由烟草花叶病毒芜菁静脉清除病毒(TVCV)编码的MP相互作用,并调节其在细胞之间的运输。在植物中使用双分子荧光互补(BiFC)和酵母双杂交检测,我们在这里显示TMV PLS与SYTA相互作用。该PLS序列对于与SYTA相互作用既是必需的又是充分的,并且在拟南芥syta敲除系中,TMV PLS的胞浆靶向活性大大降低。我们的发现表明,SYTA是一种可以识别TMV PLS的宿主因子,并表明这种相互作用可能稳定了TMV MP与胞浆瘤的关联。重要信息植物病毒利用其运动蛋白(MPs)穿过宿主细胞间的连接,即线虫。这种传输的最吸引人但研究最少的方面之一是MP信号序列及其宿主识别因子。最近,我们已经描述了烟草花叶病毒(TMV)MP的胞质定位信号(PLS)。在这里,我们确定了拟南芥突触素A(SYTA)作为识别TMV MP PLS并促进其与胞膜结合的宿主因子。这些发现的意义有两个方面:(i)我们确定了TMV MP与质膜上的细胞膜的结合是质膜靶向中重要的PLS依赖性步骤,以及(ii)我们鉴定了能特异性识别PLS的植物SYTA蛋白。作为此步骤涉及的宿主因素。

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