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2
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本文引用的文献

1
Isolation and genetic analysis of Saccharomyces cerevisiae mutants supersensitive to G1 arrest by a factor and alpha factor pheromones.对因一种因子和α因子信息素而对G1期阻滞超敏感的酿酒酵母突变体的分离与遗传分析。
Mol Cell Biol. 1982 Jan;2(1):11-20. doi: 10.1128/mcb.2.1.11-20.1982.
2
The role of S. cerevisiae cell division cycle genes in nuclear fusion.酿酒酵母细胞分裂周期基因在核融合中的作用。
Genetics. 1982 Feb;100(2):175-84. doi: 10.1093/genetics/100.2.175.
3
Structure of a yeast pheromone gene (MF alpha): a putative alpha-factor precursor contains four tandem copies of mature alpha-factor.酵母信息素基因(MFα)的结构:一种假定的α-因子前体包含四个成熟α-因子的串联拷贝。
Cell. 1982 Oct;30(3):933-43. doi: 10.1016/0092-8674(82)90298-7.
4
Isolation of the putative structural gene for the lysine-arginine-cleaving endopeptidase required for processing of yeast prepro-alpha-factor.用于加工酵母前体α因子所需的赖氨酸-精氨酸裂解内肽酶的假定结构基因的分离。
Cell. 1984 Jul;37(3):1075-89. doi: 10.1016/0092-8674(84)90442-2.
5
Extracellular suppression allows mating by pheromone-deficient sterile mutants of Saccharomyces cerevisiae.细胞外抑制作用使得酿酒酵母的信息素缺陷型不育突变体能够进行交配。
J Bacteriol. 1983 Aug;155(2):903-6. doi: 10.1128/jb.155.2.903-906.1983.
6
One-step gene disruption in yeast.酵母中的一步基因破坏
Methods Enzymol. 1983;101:202-11. doi: 10.1016/0076-6879(83)01015-0.
7
Saccharomyces cerevisiae contains two discrete genes coding for the alpha-factor pheromone.酿酒酵母包含两个编码α因子信息素的不同基因。
Nucleic Acids Res. 1983 Jun 25;11(12):4049-63. doi: 10.1093/nar/11.12.4049.
8
Oligonucleotide-directed mutagenesis of DNA fragments cloned into M13 vectors.克隆至M13载体的DNA片段的寡核苷酸定向诱变
Methods Enzymol. 1983;100:468-500. doi: 10.1016/0076-6879(83)00074-9.
9
Sex-specific growth responses in yeasts.酵母中的性别特异性生长反应。
Antonie Van Leeuwenhoek. 1971;37(4):379-84. doi: 10.1007/BF02218508.
10
Mutations affecting sexual conjugation and related processes in Saccharomyces cerevisiae. I. Isolation and phenotypic characterization of nonmating mutants.影响酿酒酵母有性接合及相关过程的突变。I. 非交配突变体的分离与表型特征分析
Genetics. 1974 Feb;76(2):255-71. doi: 10.1093/genetics/76.2.255.

α-因子和MFα1α-因子前体在酵母交配中的作用。

Role of alpha-factor and the MF alpha 1 alpha-factor precursor in mating in yeast.

作者信息

Caplan S, Kurjan J

机构信息

Department of Biological Sciences, Columbia University, New York, New York 10027.

出版信息

Genetics. 1991 Feb;127(2):299-307. doi: 10.1093/genetics/127.2.299.

DOI:10.1093/genetics/127.2.299
PMID:2004704
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1204357/
Abstract

The peptide pheromones secreted by a and alpha cells (called a-factor and alpha-factor, respectively) are each encoded by two structural genes. For strains of either mating type, addition of exogenous pheromone does not alleviate the mating defect of mutants with disruptions of both structural genes. In addition, a particular insertion mutation in the major alpha-factor structural gene (MF alpha 1) that should result in an altered product inhibits alpha mating. These results suggested that the pheromone precursors (the MF alpha 1 pro region in particular) might play a second role in mating separate from the role of pheromone production. To analyze the role of alpha-factor and the MF alpha 1 precursor in alpha mating, we have constructed two classes of mutants. The mating defects of mutants that should produce the MF alpha 1 pro region peptide but no alpha-factor could not be alleviated by addition of exogenous alpha-factor in crosses to a wild-type a strain, indicating that the previous results were not due to an inability of the disruption mutants to produce the pro region peptide. Mutants able to produce alpha-factor, but with a variety of alterations in MF alpha 1 precursor structure, mated at levels proportional to the levels of alpha-factor produced, suggesting that the only role of the alpha-factor precursor in mating is to produce alpha-factor. Both of these results argue against a role for the MF alpha 1 pro region separate from its role in alpha-factor production.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

a细胞和α细胞分泌的肽类信息素(分别称为a因子和α因子)均由两个结构基因编码。对于任一交配型的菌株,添加外源性信息素并不能缓解两个结构基因均被破坏的突变体的交配缺陷。此外,主要α因子结构基因(MFα1)中一个特定的插入突变,该突变应导致产物改变,但却抑制了α交配。这些结果表明,信息素前体(特别是MFα1前体区域)可能在交配中发挥了与信息素产生作用不同的第二种作用。为了分析α因子和MFα1前体在α交配中的作用,我们构建了两类突变体。在与野生型a菌株杂交时,那些应该产生MFα1前体区域肽但不产生α因子的突变体的交配缺陷,不能通过添加外源性α因子来缓解,这表明先前的结果并非由于破坏突变体无法产生前体区域肽所致。能够产生α因子,但MFα1前体结构有各种改变的突变体,其交配水平与产生的α因子水平成比例,这表明α因子前体在交配中的唯一作用是产生α因子。这两个结果都表明MFα1前体区域除了在α因子产生中的作用外,没有其他作用。(摘要截短于250字)