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有证据表明,在总状毛霉的生长和形态发生过程中,MRas1和MRas3蛋白与不同的细胞功能相关。

Evidence that MRas1 and MRas3 proteins are associated with distinct cellular functions during growth and morphogenesis in the fungus Mucor racemosus.

作者信息

Roze L V, Mahanti N, Mehigh R, McConnell D G, Linz J E

机构信息

Department of Food Science and Human Nutrition, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Fungal Genet Biol. 1999 Dec;28(3):171-89. doi: 10.1006/fgbi.1999.1177.

Abstract

The filamentous fungus Mucor racemosus provides a simple and unique model system for defining the function of individual ras genes in a gene family which is closely related to mammalian ras genes. The current study was designed to investigate the role of Mras1 and Mras3 in different stages of fungal morphogenesis, including sporangiospore germination, sporulation, and dimorphic transitions. The overall patterns of Mras1 and Mras3 transcript and protein accumulation were markedly different but, in general, transcripts and proteins were present at low levels during spherical growth and their accumulated level increased severalfold during polar growth (germ tube emergence and elongation). In contrast to Mras1, relatively high levels of Mras3 transcript accumulated during sporulation and MRas3 protein accumulated in sporangiospores. Transformation of M. racemosus with an activated allele of Mras3 reduced growth rate during aerobic sporangiospore germination, while a dominant-negative allele of Mras3 caused a 40% decrease in viable asexual spores. An activated allele of Mras1 increased growth rate during sporangiospore germination but neither activated nor dominant-negative alleles of Mras1 affected total number of asexual spores. Expression of MRas3 and MRas1 proteins appear to be subject to different regulatory mechanisms: exogenous dibutyryl-cAMP and fusidienol caused a strong repression of the level of MRas3 protein (but not MRas1) concurrent with the inhibition of polar growth. Differential posttranslational modification and intracellular localization of MRas1 and MRas3 proteins were also observed. The data strongly suggest that Mras3 and Mras1 play different roles in regulation of cell growth and morphogenesis in Mucor.

摘要

丝状真菌总状毛霉为定义一个与哺乳动物ras基因密切相关的基因家族中单个ras基因的功能提供了一个简单而独特的模型系统。当前的研究旨在调查Mras1和Mras3在真菌形态发生的不同阶段所起的作用,包括孢子囊孢子萌发、孢子形成和双态转变。Mras1和Mras3转录本及蛋白质积累的总体模式明显不同,但一般而言,在球形生长阶段转录本和蛋白质水平较低,而在极性生长阶段(芽管出现和伸长)其积累水平增加了几倍。与Mras1相反,在孢子形成过程中积累了相对较高水平的Mras3转录本,且MRas3蛋白在孢子囊孢子中积累。用Mras3的激活等位基因转化总状毛霉会降低需氧孢子囊孢子萌发期间的生长速率,而Mras3的显性负等位基因会导致存活无性孢子数量减少40%。Mras1的激活等位基因会增加孢子囊孢子萌发期间的生长速率,但Mras1的激活等位基因和显性负等位基因均不影响无性孢子的总数。MRas3和MRas1蛋白的表达似乎受到不同的调控机制:外源性二丁酰环磷腺苷和夫西地醇在抑制极性生长的同时,会强烈抑制MRas3蛋白(而非MRas1)的水平。还观察到MRas1和MRas3蛋白在翻译后修饰和细胞内定位方面存在差异。这些数据有力地表明,Mras3和Mras1在总状毛霉的细胞生长和形态发生调控中发挥着不同的作用。

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