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PalC是真菌pH信号通路中两种含有Bro1结构域的蛋白质之一,定位于皮质结构并与Vps32结合。

PalC, one of two Bro1 domain proteins in the fungal pH signalling pathway, localizes to cortical structures and binds Vps32.

作者信息

Galindo Antonio, Hervás-Aguilar América, Rodríguez-Galán Olga, Vincent Olivier, Arst Herbert N, Tilburn Joan, Peñalva Miguel A

机构信息

Departamento de Microbiología Molecular, Centro de Investigaciones Biológicas CSIC, Ramiro de Maeztu 9, Madrid 28040, Spain.

出版信息

Traffic. 2007 Oct;8(10):1346-64. doi: 10.1111/j.1600-0854.2007.00620.x. Epub 2007 Aug 13.

Abstract

PalC, distantly related to Saccharomyces cerevisiae peripheral endosomal sorting complexes required for transport III (ESCRT-III) component Bro1p and one of six Aspergillus nidulans pH signalling proteins, contains a Bro1 domain. Green fluorescent protein (GFP)-tagged PalC is recruited to plasma membrane-associated punctate structures upon alkalinization, when pH signalling is active. PalC recruitment to these structures is dependent on the seven transmembrane domain (7-TMD) receptor and likely pH sensor PalH. PalC is a two-hybrid interactor of the ESCRT-III Vps20/Vps32 subcomplex and binds Vps32 directly. This binding is largely impaired by Pro439Phe, Arg442Ala and Arg442His substitutions in a conserved region mediating interaction of Bro1p with Vps32p, but these substitutions do not prevent cortical punctate localization, indicating Vps32 independence. In contrast, Arg442Delta impairs Vps32 binding and prevents PalC-GFP recruitment to cortical structures. pH signalling involves a plasma membrane complex including the 7-TMD receptor PalH and the arrestin-like PalF and an endosomal membrane complex involving the PalB protease, the transcription factor PacC and the Vps32 binding, Bro1-domain-containing protein PalA. PalC, which localizes to cortical structures and can additionally bind a component of ESCRT-III, has the features required to bridge these two entities. A likely S. cerevisiae orthologue of PalC has been identified, providing the basis for a unifying hypothesis of gene regulation by ambient pH in ascomycetes.

摘要

PalC与酿酒酵母外周内体运输所需分选复合物III(ESCRT-III)组分Bro1p有较远的亲缘关系,是构巢曲霉六种pH信号蛋白之一,含有一个Bro1结构域。当pH信号激活即碱化时,绿色荧光蛋白(GFP)标记的PalC会被募集到质膜相关点状结构上。PalC募集到这些结构上依赖于七次跨膜结构域(7-TMD)受体以及可能的pH传感器PalH。PalC是ESCRT-III Vps20/Vps32亚复合物的双杂交相互作用蛋白,并且直接结合Vps32。在介导Bro1p与Vps32p相互作用的保守区域中,Pro439Phe、Arg442Ala和Arg442His替换会极大地削弱这种结合,但这些替换并不妨碍皮质点状定位,表明其定位不依赖Vps32。相反,Arg442缺失会削弱Vps32结合,并阻止PalC-GFP募集到皮质结构。pH信号涉及一个质膜复合物,包括7-TMD受体PalH和类抑制蛋白PalF,以及一个内体膜复合物,涉及PalB蛋白酶、转录因子PacC和与Vps32结合的含Bro1结构域的蛋白PalA。定位于皮质结构且能额外结合ESCRT-III一个组分的PalC,具有连接这两个实体所需的特征。已鉴定出PalC可能的酿酒酵母直系同源物,为子囊菌中环境pH基因调控的统一假说提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b6b/2171039/6d6c1895b161/tra0008-1346-f1.jpg

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