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MPB2C a Microtubule-Associated Protein Regulates Non-Cell-Autonomy of the Homeodomain Protein KNOTTED1

机译:MPB2C一种微管相关蛋白调节同源结构域蛋白KNOTTED1的非细胞自主性

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摘要

Plasmodesmata establish a pathway for the intercellular trafficking of viral movement proteins and endogenous non-cell-autonomous proteins, such as the two closely related meristem-maintaining KNOTTED1-like homeobox (KNOX) proteins Zea mays KNOTTED1 (KN1) and Arabidopsis thaliana SHOOTMERISTEMLESS (STM). KNOX family members are DNA binding proteins that regulate the transcriptional activity of target genes in conjunction with BEL1-like homeodomain proteins. It has been shown previously, using in vivo transport assays, that the C-terminal domain of KN1, including the homeodomain, is necessary and sufficient for cell-to-cell transport through plasmodesmata. Here, using interaction and coexpression assays, we demonstrate that the microtubule-associated and viral movement protein binding protein MPB2C from Nicotiana tabacum, and its homolog in Arabidopsis, At MPB2C, are KN1/STM binding factors. Interaction between the MPB2C proteins and KN1/STM was mapped to the KN1 homeodomain, a region not essential for heterodimerization with BEL1. Expression of MPB2C in single cells prevented KN1 cell-to-cell movement. Furthermore, in vivo trichome rescue studies established that MPB2C negatively regulates KN1 association to plasmodesmata and, consequently, cell-to-cell transport. These findings are discussed in terms of the role played by MPB2C proteins in regulating the cell-to-cell trafficking of homeodomain proteins in plants.
机译:疟原虫为病毒运动蛋白和内源性非细胞自主蛋白(例如两个紧密相关的分生组织维持型KNOTTED1同源盒蛋白(KNOX)蛋白)和玉米拟南芥KNOTTED1(KN1)和拟南芥拟南芥SHOOTMERISTEMLESS(STM) )。 KNOX家族成员是DNA结合蛋白,可与BEL1类同源结构域蛋白一起调节靶基因的转录活性。先前已经通过体内转运测定法表明,KN1的C末端结构域,包括同源结构域,对于通过等离子胞膜进行细胞间转运是必要的和充分的。在这里,使用相互作用和共表达测定,我们证明了来自烟草的微管相关和病毒运动蛋白结合蛋白MPB2C及其在拟南芥中的同源物,在MPB2C,是KN1 / STM结合因子。 MPB2C蛋白和KN1 / STM之间的相互作用被定位到KN1同源域,该区域对于与BEL1异源二聚化不是必需的。 MPB2C在单个细胞中的表达阻止了KN1细胞之间的移动。此外,体内毛状体拯救研究证实,MPB2C负调节KN1与胞浆瘤的结合,从而调节细胞间的转运。就MPB2C蛋白在调节植物体内同源域蛋白的细胞间运输中所起的作用进行了讨论。

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