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首页> 外文期刊>Journal of Virology >T4-induced antipolarity: temporal heterogeneity in response of early transcription units.
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T4-induced antipolarity: temporal heterogeneity in response of early transcription units.

机译:T4诱导的反极性:早期转录单元的响应时颞异质性。

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When T4 infects Escherichia coli in the absence of protein synthesis, rho-mediated termination takes place on early polycistronic transcription units. During the early period of development, the appearance of delayed early transcripts becomes insensitive to the inhibition of protein synthesis. In the absence of the T4 gene product mot, an inducer for the middle mode of transcription, only the early polycistronic messengers are synthesized. In mot- -infected cells, the synthesis of the distal transcripts still becomes completely insensitive to the polar effect of chloramphenicol. This happens because potential rho-sensitive termination sites are not used in these cells. In this respect, overcoming polarity induced by chloramphenicol can be called a process of antitermination. The mot-independent antitermination can be studied by addition of chloramphenicol during infections with mot- bacteriophage. The effect is stable; it allows a constant percentage of rho-sensitive termination sites in the cell to be traversed by RNA polymerase for at least 10 min at 42 degrees C. By examining six different transcription units on the T4 genome, we find that each transcription unit has a cis-acting component (or components) which determines when its rho-sensitive termination site stops functioning. In extreme cases, rho acts with 100% efficiency in some transcription units, whereas it is almost inactive in others.
机译:当T4在没有蛋白质合成的情况下感染大肠杆菌时,在早期的聚际转录单元上进行RHO介导的终止。在初期的发展期间,延迟早期转录物的外观对蛋白质合成的抑制不敏感。在没有T4基因产物MOT的情况下,仅合成早期的多函数传染仪的诱导剂。在动脉染色的细胞中,对远端转录物的合成仍然对氯霉素的极性效果完全不敏感。这发生是因为在这些细胞中不使用潜在的RHO敏感终止位点。在这方面,可以称为氯霉素诱导的极性可以称为抗渗透过程。可以通过在具有MOT-噬菌体的感染期间加入氯霉素来研究MOT无关的抗核。效果稳定;它允许通过RNA聚合酶在42℃下通过RNA聚合酶遍历细胞中的RHO敏感终止位点的恒定百分比。通过在T4基因组上检查六个不同的转录单元,我们发现每个转录单元都有一个顺式 - 确定其Rho敏感终止位点停止运行时的组件(或组件)。在极端情况下,RHO在某些转录单位中以100%的效率作用,而在其他方面几乎不活跃。

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