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噬菌体SP15富含dTMP的DNA的产生与表达。

Production and expression of dTMP-enriched DNA of bacteriophage SP15.

作者信息

Casella E, Markewych O, Dosmar M, Witmer H

出版信息

J Virol. 1978 Dec;28(3):753-66. doi: 10.1128/JVI.28.3.753-766.1978.

Abstract

Normal DNA of Bacillus subtilis phage SP15 contains approximately equimolar quantities of dTMP and a hypermodified nucleotide, 5-dihydroxypentyl-dUMP (DHPdUMP). Deoxythymidine (dThd) rescue of phage DNA synthesis in 5-fluorodeoxyuridine (FUdR)-inhibited cultures resulted in the synthesis of SP15 DNA containing enhanced levels of dTMP and correspondingly reduced levels of DHPdUMP. This rescued system was used to probe possible roles of DHPdUMP in phage development. The results suggested that normal levels of DHPdUMP were not required for proper transcription of phage DNA, but normal amounts of DHPdUMP were indispensable for phage assembly and/or DNA maturation. The amount of exogenous dThd required to rescue phage DNA synthesis in FUdR-inhibited cultures was 20-fold higher than the concentration required to rescue cellular replication, whereas the same low concentrations of dThd sufficed to rescue viral and bacterial DNA syntheses in aminopterin-inhibited cultures. Normal SP15 DNA was made in rescued, aminopterin-inhibited cultures. We suggest that FUdR (but not aminopterin) partially suppresses biosynthesis of the hypermodified nucleotide and that there is a barrier to replacement of DHPdUMP by dTMP; therefore, exceptionally large amounts of dThd must be salvaged in FUdR-inhibited cultures to force replacement of the unusual nucleotide by dTMP.

摘要

枯草芽孢杆菌噬菌体SP15的正常DNA含有大约等摩尔量的dTMP和一种高度修饰的核苷酸,5-二羟基戊基-dUMP(DHPdUMP)。在5-氟脱氧尿苷(FUdR)抑制的培养物中,脱氧胸苷(dThd)拯救噬菌体DNA合成导致合成的SP15 DNA中dTMP水平升高,相应地DHPdUMP水平降低。这个拯救系统被用来探究DHPdUMP在噬菌体发育中的可能作用。结果表明,正常水平的DHPdUMP对于噬菌体DNA的正确转录不是必需的,但正常量的DHPdUMP对于噬菌体组装和/或DNA成熟是不可或缺的。在FUdR抑制的培养物中拯救噬菌体DNA合成所需的外源dThd量比拯救细胞复制所需的浓度高20倍,而相同低浓度的dThd足以在氨基蝶呤抑制的培养物中拯救病毒和细菌的DNA合成。在拯救的、氨基蝶呤抑制的培养物中产生了正常的SP15 DNA。我们认为FUdR(而不是氨基蝶呤)部分抑制了高度修饰核苷酸的生物合成,并且存在dTMP取代DHPdUMP的障碍;因此,在FUdR抑制的培养物中必须挽救异常大量的dThd,以迫使dTMP取代这种不寻常的核苷酸。

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