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The TWD40-2 protein and the AP2 complex cooperate in the clathrin-mediated endocytosis of cellulose synthase to regulate cellulose biosynthesis

机译:TWD40-2蛋白和AP2复合物在网格蛋白介导的纤维素合酶内吞作用中协同调节纤维素的生物合成

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摘要

Cellulose biosynthesis is performed exclusively by plasma membrane-localized cellulose synthases (CESAs). Therefore, the trafficking of CESAs to and from the plasma membrane is an important mechanism for regulating cellulose biosynthesis. CESAs were recently identified as cargo proteins of the classic adaptor protein 2 (AP2) complex of the clathrin-mediated endocytosis (CME) pathway. The AP2 complex of the CME pathway is conserved in yeast, animals, and plants, and has been well-characterized in many systems. In contrast, the recently discovered TPLATE complex (TPC), which is proposed to function as a CME adaptor complex, is only conserved in plants and a few other eukaryotes. In this study, we discovered that the TWD40-2 protein, a putative member of the TPC, is also important for the endocytosis of CESAs. Genetic analysis between TWD40-2 and AP2M of the AP2 complex revealed that the roles of TWD40-2 in CME are both distinct from and cooperative with the AP2 complex. Loss of efficient CME in twd40-2-3 resulted in the unregulated overaccumulation of CESAs at the plasma membrane. In seedlings of twd40-2-3 and other CME-deficient mutants, a direct correlation was revealed between endocytic deficiency and cellulose content deficiency, highlighting the importance of controlled CESA endocytosis in regulating cellulose biosynthesis.
机译:纤维素生物合成仅通过质膜定位的纤维素合酶(CESA)进行。因此,CESAs往返于质膜的运输是调节纤维素生物合成的重要机制。 CESA最近被确定为网格蛋白介导的内吞作用(CME)途径的经典衔接蛋白2(AP2)复合物的货物蛋白。 CME途径的AP2复合物在酵母,动物和植物中是保守的,并且在许多系统中都有很好的特征。相反,最近发现的TPLATE复合物(TPC)被提议用作CME衔接子复合物,仅在植物和其他一些真核生物中得到保存。在这项研究中,我们发现TTP40-2蛋白(TPC的假定成员)对于CESA的内吞作用也很重要。 TWD40-2和AP2复合物的AP2M之间的遗传分析表明,TWD40-2在CME中的作用既不同于AP2复合物,又与AP2复合物协同。 twd40-2-3中有效CME的丧失导致CESA在质膜上的失控过度积累。在twd40-2-3和其他CME缺陷型突变体的幼苗中,揭示了内吞性缺乏和纤维素含量缺乏之间的直接相关性,突显了受控CESA内吞作用在调节纤维素生物合成中的重要性。

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