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线虫秀丽隐杆线虫中的一种新型信息抑制。

A new kind of informational suppression in the nematode Caenorhabditis elegans.

作者信息

Hodgkin J, Papp A, Pulak R, Ambros V, Anderson P

机构信息

MRC Laboratory of Molecular Biology, Cambridge, England.

出版信息

Genetics. 1989 Oct;123(2):301-13. doi: 10.1093/genetics/123.2.301.

Abstract

Independent reversions of mutations affecting three different Caenorhabditis elegans genes have each yielded representatives of the same set of extragenic suppressors. Mutations at any one of six loci act as allele-specific recessive suppressors of certain allels of unc-54 (a myosin heavy chain gene), lin-29 (a heterochronic gene), and tra-2 (a sex determination gene). The same mutations also suppress certain alleles of another sex determination gene, tra-1, and of a morphogenetic gene, dpy-5. In addition to their suppression phenotype, the suppressor mutations cause abnormal morphogenesis of the male bursa and the hermaphrodite vulva. We name these genes smg-1 through smg-6 (suppressor with morphogenetic effect on genitalia), in order to distinguish them from mab (male abnormal) genes that can mutate to produce abnormal genitalia but which do not act as suppressors (smg-1 and smg-2 are new names for two previously described genes, mab-1 and mab-11). The patterns of suppression, and the interactions between the different smg genes, are described and discussed. In general, suppression is recessive and incomplete, and at least some of the suppressed mutations are hypomorphic in nature. A suppressible allele of unc-54 contains a deletion in the 3' noncoding region of the gene; the protein coding region of the gene is apparently unaffected. This suggests that the smg suppressors affect a process other than translation, for example mRNA processing, transport, or stability.

摘要

影响秀丽隐杆线虫三个不同基因的突变独立回复突变,各自产生了同一组基因外抑制子的代表。六个位点中任何一个位点的突变,可作为unc-54(一种肌球蛋白重链基因)、lin-29(一种异时性基因)和tra-2(一种性别决定基因)某些等位基因的等位基因特异性隐性抑制子。相同的突变也抑制另一种性别决定基因tra-1和一种形态发生基因dpy-5的某些等位基因。除了其抑制表型外,这些抑制子突变还导致雄性交合伞和雌雄同体阴门的形态发生异常。我们将这些基因命名为smg-1至smg-6(对生殖器有形态发生作用的抑制子),以便将它们与mab(雄性异常)基因区分开来,mab基因可发生突变产生异常生殖器,但不具有抑制作用(smg-1和smg-2是两个先前描述的基因mab-1和mab-11的新名称)。描述并讨论了抑制模式以及不同smg基因之间的相互作用。一般来说,抑制是隐性的且不完全的,并且至少一些被抑制的突变本质上是亚效等位基因。unc-54的一个可被抑制的等位基因在该基因的3'非编码区含有一个缺失;该基因的蛋白质编码区显然未受影响。这表明smg抑制子影响的是翻译以外的过程,例如mRNA加工、运输或稳定性。

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