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确保. 一夫一妻制交配的机制。

Mechanisms that ensure monogamous mating in .

机构信息

Department of Pharmacology and Cancer Biology, Duke University Medical Center, Durham, NC 27710.

出版信息

Mol Biol Cell. 2021 Apr 15;32(8):638-644. doi: 10.1091/mbc.E20-12-0757. Epub 2021 Feb 17.

Abstract

Haploid cells of the budding yeast communicate using secreted pheromones and mate to form diploid zygotes. Mating is monogamous, resulting in the fusion of precisely one cell of each mating type. Monogamous mating in crowded conditions, where cells have access to more than one potential partner, raises the question of how multiple-mating outcomes are prevented. Here we identify mutants capable of mating with multiple partners, revealing the mechanisms that ensure monogamous mating. Before fusion, cells develop polarity foci oriented toward potential partners. Competition between these polarity foci within each cell leads to disassembly of all but one focus, thus favoring a single fusion event. Fusion promotes the formation of heterodimeric complexes between subunits that are uniquely expressed in each mating type. One complex shuts off haploid-specific gene expression, and the other shuts off the ability to respond to pheromone. Zygotes able to form either complex remain monogamous, but zygotes lacking both can re-mate.

摘要

出芽酵母的单倍体细胞通过分泌信息素来进行交流,并交配形成二倍体合子。交配是一夫一妻制的,导致每一种交配类型的细胞精确融合。在拥挤的条件下,当细胞有多个潜在伴侣可供选择时,一夫一妻制的交配就会产生一个问题,即如何防止多种交配结果的发生。在这里,我们鉴定了能够与多个伴侣交配的突变体,揭示了确保一夫一妻制交配的机制。在融合之前,细胞会形成朝向潜在伴侣的极性焦点。每个细胞中这些极性焦点之间的竞争导致除一个焦点外所有焦点的解体,从而有利于单一融合事件。融合促进了在每个交配类型中唯一表达的亚基之间形成异源二聚体复合物。一个复合物关闭了单倍体特异性基因表达,另一个复合物则关闭了对信息素的反应能力。能够形成任何一种复合物的合子仍然是一夫一妻制的,但缺乏两者的合子可以重新交配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2743/8108519/dbe65594a96c/mbc-32-638-g001.jpg

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