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噬菌体λ中b2区域对int基因表达的下游调控。

Downstream regulation of int gene expression by the b2 region in phage lambda.

作者信息

Epp C, Pearson M L, Enquist L

出版信息

Gene. 1981 May;13(4):327-37. doi: 10.1016/0378-1119(81)90012-3.

Abstract

Expression of the int gene after phage lambda infection normally requires the products of genes cII and cIII. However, when the phage carries a deletion in the nonessential b2 region adjacent to int, efficient synthesis of active Int protein does not require cII and cIII function. This inhibition of Int synthesis by nucleotide sequences downstream from the int structural gene behaves in a cis-dominant fashion in mixed infections. It is specific for PL- and not pI-initiated transcripts. Based on these observations, and those of others, a model is proposed in which Int translation from the pL transcript is inhibited by the interaction of downstream b2 nucleotide sequences and nucleotide sequences in the int region. The data imply a novel temporal mechanism regulating prophage lambda induction: circularization of the prophage genome results in the transposition of inhibitory b2 region sequences next to int and blocks further Int protein synthesis beyond the low level required for excision. As a consequence of this process, the control of int expression is transferred from the pL promoter to pI and the cII/cIII system. Such a genetic regulatory mechanism involving the rearrangement of genetic elements downstream from a structural gene may be of general use during development in other systems.

摘要

噬菌体λ感染后int基因的表达通常需要基因cII和cIII的产物。然而,当噬菌体在与int相邻的非必需b2区域存在缺失时,活性Int蛋白的高效合成并不需要cII和cIII的功能。int结构基因下游的核苷酸序列对Int合成的这种抑制作用在混合感染中表现为顺式显性。它对PL启动而非pI启动的转录本具有特异性。基于这些观察结果以及其他观察结果,提出了一个模型,其中来自pL转录本的Int翻译受到下游b2核苷酸序列与int区域核苷酸序列相互作用的抑制。这些数据暗示了一种调节原噬菌体λ诱导的新型时间机制:原噬菌体基因组的环化导致抑制性b2区域序列转座到int旁边,并阻止超出切除所需低水平的进一步Int蛋白合成。作为这一过程的结果,int表达的控制从pL启动子转移到pI和cII/cIII系统。这种涉及结构基因下游遗传元件重排的遗传调控机制在其他系统的发育过程中可能具有普遍用途。

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