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Comparative Analysis of Transmembrane Regulators of the Filamentous Growth Mitogen-Activated Protein Kinase Pathway Uncovers Functional and Regulatory Differences

机译:丝状生长丝分裂素活化的蛋白激酶途径的跨膜调节剂的比较分析发现功能和调节差异。

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摘要

Filamentous growth is a microbial differentiation response that involves the concerted action of multiple signaling pathways. In budding yeast, one pathway that regulates filamentous growth is a Cdc42p-dependent mitogen-activated protein kinase (MAPK) pathway. Several transmembrane (TM) proteins regulate the filamentous growth pathway, including the signaling mucin Msb2p, the tetraspan osmosensor Sho1p, and an adaptor Opy2p. The TM proteins were compared to identify common and unique features. Msb2p, Sho1p, and Opy2p associated by coimmunoprecipitation analysis but showed predominantly different localization patterns. The different localization patterns of the proteins resulted in part from different rates of turnover from the plasma membrane (PM). In particular, Msb2p (and Opy2p) were turned over rapidly compared to Sho1p. Msb2p signaled from the PM, and its turnover was a rate-limiting step in MAPK signaling. Genetic analysis identified unique phenotypes of cells overexpressing the TM proteins. Therefore, each TM regulator of the filamentous growth pathway has its own regulatory pattern and specific function in regulating filamentous growth. This specialization may be important for fine-tuning and potentially diversifying the filamentation response.
机译:丝状生长是一种微生物分化反应,涉及多种信号通路的协同作用。在发芽酵母中,调节丝状生长的一种途径是Cdc42p依赖性丝裂原活化蛋白激酶(MAPK)途径。几种跨膜(TM)蛋白调节丝状生长途径,包括信号传导粘蛋白Msb2p,tetraspan渗透压传感器Sho1p和适配器Opy2p。比较TM蛋白以鉴定共同和独特的特征。 Msb2p,Sho1p和Opy2p通过免疫共沉淀分析相关联,但显示出主要不同的定位模式。蛋白质的不同定位模式部分是由于质膜(PM)的周转率不同所致。特别是,与Sho1p相比,Msb2p(和Opy2p)被快速移交了。 Msb2p从PM发出信号,其更新是MAPK信号传导中的一个限速步骤。遗传分析确定了过表达TM蛋白的细胞的独特表型。因此,丝状生长途径的每个TM调节剂在调节丝状生长中具有其自身的调节模式和特定功能。该专业化对于微调和可能多样化丝化反应可能很重要。

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