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关于免疫基因对盐生盐杆菌噬菌体φH早期裂解转录影响的体内研究。

In vivo studies on the effects of immunity genes on early lytic transcription in the Halobacterium salinarium phage phi H.

作者信息

Stolt P, Zillig W

机构信息

Max-Planck-Institut für Biochemie, Martinsried, FRG.

出版信息

Mol Gen Genet. 1992 Nov;235(2-3):197-204. doi: 10.1007/BF00279361.

Abstract

We have studied in vivo the effects of putative immunity genes on the expression of an early lytic gene of the Halobacterium salinarium phage. phi H. We transformed an H. salinarium host with DNA coding for a putative repressor gene, the transcript of which has been designated T6. We show that, in vivo, this gene specifically shuts off production of the early lytic transcript T4. A construct carrying the DNA transcribed as T4, but without its putative repressor binding sequences, shows T4 transcription enhanced to a level comparable to that observed in lytic growth of mutant phages capable of growing on immune H. salinarium strains. This transcript is insensitive to the action of the T6 product. The product of this 'unrepressed' T4 transcript is able to complement in trans the repressed T4 on superinfecting phi H-sensitive phages, allowing these to grow on a strain containing the repressor gene. It has, however, no effect on the production of repressor. We also mapped the start and end points of two other transcripts, T9 and T10, which are expressed only in the lysogenic state by cells immune to superinfection by phage, cloned the coding DNA and used it to transform H. salinarium. This DNA, though transcribed by the transformants, has no detectable effect on the cells, which remain susceptible to phage infection.

摘要

我们已经在体内研究了假定的免疫基因对盐生盐杆菌噬菌体φH早期裂解基因表达的影响。我们用编码假定阻遏基因的DNA转化盐生盐杆菌宿主,该基因的转录本已被命名为T6。我们表明,在体内,该基因特异性地关闭早期裂解转录本T4的产生。携带转录为T4的DNA但没有其假定的阻遏物结合序列的构建体显示T4转录增强到与在能够在免疫盐生盐杆菌菌株上生长的突变噬菌体的裂解生长中观察到的水平相当。该转录本对T6产物的作用不敏感。这种“未被阻遏的”T4转录本的产物能够反式互补超感染φH敏感噬菌体上被阻遏的T4,使这些噬菌体能够在含有阻遏基因的菌株上生长。然而,它对阻遏物的产生没有影响。我们还绘制了另外两个转录本T9和T10的起始和终点,它们仅在对噬菌体超感染免疫的细胞的溶原状态下表达,克隆了编码DNA并用它转化盐生盐杆菌。这种DNA虽然被转化体转录,但对细胞没有可检测到的影响,细胞仍然易受噬菌体感染。

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