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F-Box Protein RcyA Controls Turnover of the Kinesin-7 Motor KipA in Aspergillus nidulans

机译:F-盒蛋白RcyA控制在构巢曲霉中Kinesin-7电机KipA的周转率。

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摘要

Fungal filamentous growth depends on continuous membrane insertion at the tip, the delivery of membrane-bound positional markers, and the secretion of enzymes for cell wall biosynthesis. This is achieved through exocytosis. At the same time, polarized growth requires membrane and protein recycling through endocytosis. Endocytic vesicles are thought to enter the protein degradation pathway or recycle their content to the cell surface. In Saccharomyces cerevisiae, the Rcy1 F-box protein is involved in the recycling process of a v-SNARE protein. We identified a Rcy1 orthologue, RcyA, in the filamentous fungus Aspergillus nidulans as a protein interacting with the KipA kinesin-7 motor protein in a yeast two-hybrid screen. The interaction was confirmed through bimolecular fluorescence complementation. RcyA possesses an F-box domain at the N terminus and a prenylation (CaaX) motif at the C terminus. RcyA shows also similarity to Sec10, a component of the exocyst complex. The RcyA protein localized to the hyphal tip and forming septa, likely through transportation on secretory vesicles and partially on early endosomes, but independently of KipA. Deletion of rcyA did not cause severe morphological changes but caused partial defects in the recycling of the SynA v-SNARE protein and the positioning of the cell end markers TeaA and TeaR. In addition, deletion of rcyA led to increased concentrations of the KipA protein, whereas the transcript concentration was unaffected. These results suggest that RcyA probably labels KipA for degradation and thereby controls the protein amount of KipA.
机译:真菌丝状生长取决于尖端处连续的膜插入,膜结合的位置标志物的递送以及细胞壁生物合成酶的分泌。这是通过胞吐作用实现的。同时,极化生长需要通过胞吞作用来回收膜和蛋白质。内吞囊泡被认为进入蛋白质降解途径或将其内容物再循环至细胞表面。在酿酒酵母中,Rcy1 F-box蛋白参与v-SNARE蛋白的回收过程。我们在丝状真菌构巢曲霉中确定了一个Rcy1直向同源物RcyA,该蛋白是与酵母双杂交筛选中的KipA kinesin-7运动蛋白相互作用的一种蛋白。通过双分子荧光互补证实了相互作用。 RcyA在N末端具有F-box结构域,在C末端具有异戊二烯化(CaaX)基序。 RcyA还显示出与囊外复合物的组成部分Sec10的相似性。 RcyA蛋白可能定位在菌丝末端并形成隔膜,可能是通过在分泌性小泡上以及部分早期内体上的转运来实现的,但与KipA无关。删除rcyA不会引起严重的形态变化,但会导致SynA v-SNARE蛋白的回收利用以及细胞末端标记TeaA和TeaR的定位出现部分缺陷。另外,rcyA的缺失导致KipA蛋白浓度增加,而转录物浓度不受影响。这些结果表明,RcyA可能标记了KipA降解,从而控制了KipA的蛋白质含量。

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