首页> 美国卫生研究院文献>Plant Physiology >Focus Issue on Membrane Trafficking: Comparison of the Dynamics and Functional Redundancy of the Arabidopsis Dynamin-Related Isoforms DRP1A and DRP1C during Plant Development
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Focus Issue on Membrane Trafficking: Comparison of the Dynamics and Functional Redundancy of the Arabidopsis Dynamin-Related Isoforms DRP1A and DRP1C during Plant Development

机译:膜贩运的焦点问题:拟南芥与动力蛋白相关的亚型DRP1A和DRP1C在植物发育过程中的动力学和功能冗余比较

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摘要

Members of the Arabidopsis (Arabidopsis thaliana) DYNAMIN-RELATED PROTEIN1 (DRP1) family are required for cytokinesis and cell expansion. Two isoforms, DRP1A and DRP1C, are required for plasma membrane maintenance during stigmatic papillae expansion and pollen development, respectively. It is unknown whether the DRP1s function interchangeably or if they have distinct roles during cell division and expansion. DRP1C was previously shown to form dynamic foci in the cell cortex, which colocalize with part of the clathrin endocytic machinery in plants. DRP1A localizes to the plasma membrane, but its cortical organization and dynamics have not been determined. Using dual color labeling with live cell imaging techniques, we showed that DRP1A also forms discreet dynamic foci in the epidermal cell cortex. Although the foci overlap with those formed by DRP1C and clathrin light chain, there are clear differences in behavior and response to pharmacological inhibitors between DRP1A and DRP1C foci. Possible functional or regulatory differences between DRP1A and DRP1C were supported by the failure of DRP1C to functionally compensate for the absence of DRP1A. Our studies indicated that the DRP1 isoforms function or are regulated differently during cell expansion.
机译:拟南芥(Arabidopsis thaliana)动态相关蛋白1(DRP1)家族的成员需要胞质分裂和细胞扩增。在柱头乳头扩张和花粉发育过程中,质膜维持需要两种同工型,DRP1A和DRP1C。尚不知道DRP1在细胞分裂和扩增过程中是否可互换起作用或是否具有不同的作用。先前显示DRP1C在细胞皮质中形成动态病灶,其与植物中网格蛋白内吞机器的一部分共定位。 DRP1A定位于质膜,但其皮质组织和动力学尚未确定。使用带有活细胞成像技术的双色标记,我们显示DRP1A还在表皮细胞皮层中形成了离散的动态病灶。尽管病灶与DRP1C和网格蛋白轻链形成的病灶重叠,但DRP1A和DRP1C病灶之间在行为和对药理抑制剂的反应方面存在明显差异。 DRP1C无法在功能上补偿DRP1A的缺失,从而支持了DRP1A与DRP1C之间可能的功能或法规差异。我们的研究表明,DRP1亚型在细胞扩增过程中发挥功能或受到不同的调节。

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