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酵母中的一种新的非孟德尔遗传元件,可增加ski菌株中由M1双链RNA产生的细胞病理学变化。

A new non-mendelian genetic element of yeast that increases cytopathology produced by M1 double-stranded RNA in ski strains.

作者信息

Esteban R, Wickner R B

机构信息

Section on Genetics of Simple Eukaryotes, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.

出版信息

Genetics. 1987 Nov;117(3):399-408. doi: 10.1093/genetics/117.3.399.

Abstract

The Saccharomyces cerevisiae SKI (superkiller) genes are repressors of replication of M, L-A, and L-BC double-stranded (ds) RNAs; ski strains have an increased M dsRNA copy number and, as a result, are cold-sensitive for growth at 8 degrees. Growth is normal, however, at higher temperatures. We have found a new cytoplasmic genetic element [D] (for disease) that makes M1 dsRNA-containing superkiller strains grow slowly at 30 degrees, not at all at 37 degrees, and only very poorly at 20 degrees. These growth defects require three factors: a chromosomal ski mutation, the presence of M1 dsRNA, and the presence of the new cytoplasmic factor, [D]. We have isolated mutants unable to maintain [D] (mad), at least one of which is due to mutation of a single chromosomal locus. Further, [D] can be cured by growth at 37-39 degrees. We present evidence that [D] is not M, L-A, L-BC or W dsRNAs or mitochondrial DNA, 2 mu DNA, or [psi], but [D] depends on L-A for its maintenance. We also show that [D] is distinct from [B], a cytoplasmic element that allows M1 dsRNA to be stably replicated and maintained in spite of defects in certain chromosomal MAK genes that would otherwise be necessary. [D] activity is blocked by the presence of another extrachromosomal element, called [DIN] (for [D] interference). [D] and [DIN] may be different natural variants of the same molecule.

摘要

酿酒酵母的SKI(超级杀手)基因是M、L - A和L - BC双链(ds)RNA复制的抑制因子;ski菌株的M双链RNA拷贝数增加,因此在8摄氏度下对生长表现出冷敏感性。然而,在较高温度下生长正常。我们发现了一种新的细胞质遗传元件[D](致病的),它使含有M1双链RNA的超级杀手菌株在30摄氏度下生长缓慢,在37摄氏度下完全不生长,在20摄氏度下生长也非常差。这些生长缺陷需要三个因素:一个染色体ski突变、M1双链RNA的存在以及新的细胞质因子[D]的存在。我们分离出了无法维持[D]的突变体(mad),其中至少有一个是由于单个染色体位点的突变所致。此外,[D]可以通过在37 - 39摄氏度下生长而被消除。我们提供的证据表明,[D]不是M、L - A、L - BC或W双链RNA、线粒体DNA、2μDNA或[psi],但[D]的维持依赖于L - A。我们还表明,[D]与[B]不同,[B]是一种细胞质元件,尽管某些染色体MAK基因存在缺陷(否则这些基因是必需的),但它能使M1双链RNA稳定复制和维持。[D]的活性被另一种称为[DIN]([D]干扰)的染色体外元件的存在所阻断。[D]和[DIN]可能是同一分子的不同天然变体。

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