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构巢曲霉翻转酶DnfA是内吞环的货物,并与另一种翻转酶DnfB在生长和磷脂酰丝氨酸不对称性方面发挥互补作用。

Aspergillus nidulans flippase DnfA is cargo of the endocytic collar and plays complementary roles in growth and phosphatidylserine asymmetry with another flippase, DnfB.

作者信息

Schultzhaus Zachary, Yan Huijuan, Shaw Brian D

机构信息

Department of Plant Pathology and Microbiology, Texas A&M University, College Station, TX, USA.

Department of Plant Protection, Fujian Agricultural and Forestry University, Fuzhou, Fujian, China.

出版信息

Mol Microbiol. 2015 Jul;97(1):18-32. doi: 10.1111/mmi.13019. Epub 2015 May 9.

Abstract

Endocytosis and exocytosis are strictly segregated at the ends of hyphal cells of filamentous fungi, with a collar of endocytic activity encircling the growing cell tip, which elongates through directed membrane fusion. It has been proposed that this separation supports an endocytic recycling pathway that maintains polar localization of proteins at the growing apex. In a search for proteins in the filamentous fungus Aspergillus nidulans that possess an NPFxD motif, which signals for endocytosis, a Type 4 P-Type ATPase was identified and named DnfA. Interestingly, NPFxD is at a different region of DnfA than the same motif in the Saccharomyces cerevisiae ortholog, although endocytosis is dependent on this motif for both proteins. DnfA is involved in asexual sporulation and polarized growth. Additionally, it is segregated within the Spitzenkörper from another Type 4 P-type ATPase, DnfB. Next, the phosphatidylserine marker GFP::Lact-C2 was expressed in growing hyphae, which revealed that this phospholipid is enriched on the cytosolic face of secretory vesicles. This distribution is affected by deleting either dnfA or dnfB. These findings provide evidence for the spatial and temporal segregation of Type4-ATPases in filamentous fungi, and the asymmetric distribution of phosphatidylserine to the Spitzenkörper in A. nidulans.

摘要

内吞作用和胞吐作用在丝状真菌的菌丝细胞末端严格分隔,内吞活性环围绕着生长中的细胞顶端,细胞顶端通过定向膜融合而伸长。有人提出,这种分隔支持一种内吞循环途径,该途径维持蛋白质在生长顶端的极性定位。在寻找丝状真菌构巢曲霉中具有NPFxD基序(该基序是内吞作用的信号)的蛋白质时,鉴定出一种4型P型ATP酶并将其命名为DnfA。有趣的是,NPFxD在DnfA上的位置与酿酒酵母直系同源物中的相同基序不同,尽管两种蛋白质的内吞作用都依赖于该基序。DnfA参与无性孢子形成和极性生长。此外,它在Spitzenkörper中与另一种4型P型ATP酶DnfB分隔开来。接下来,在生长的菌丝中表达磷脂酰丝氨酸标记物GFP::Lact-C2,这表明这种磷脂在分泌小泡的胞质面上富集。删除dnfA或dnfB会影响这种分布。这些发现为丝状真菌中4型ATP酶的空间和时间分隔以及构巢曲霉中磷脂酰丝氨酸向Spitzenkörper的不对称分布提供了证据。

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