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温度对噬菌体T3诱导的RNA聚合酶转录的影响。

Effect of temperature on the transcription by bacteriophage T3-induced RNA polymerase.

作者信息

Mann W, Musielski H, Laue R, Michel S

出版信息

Z Allg Mikrobiol. 1979;19(9):629-35. doi: 10.1002/jobm.3630190904.

Abstract

Bacteriophage T3-induced RNA polymerase is rapidly inactivated at 42 degrees C. Addition of T3 DNA delays this process for 30 s and reduces the rate with which the enzyme activity is lost indicating that a labile binary complex between T3 DNA and polymerase must have been formed. The ternary complex between T3-specific RNA polymerase, T3 DNA, and nascent RNA chains obtained when the enzyme is incubated with T3 DNA, GTP, ATP, and UTP is stable to heat (42 degrees C) and only slowly inactivated by polyvinyl sulfate. The optimal temperature for the formation of polyanionresistant ternary complexes is 30 degrees C while the elongation of T3 RNA chains proceeds fastest at 38 degrees C.

摘要

噬菌体T3诱导的RNA聚合酶在42℃时迅速失活。添加T3 DNA可将这一过程延迟30秒,并降低酶活性丧失的速率,这表明T3 DNA与聚合酶之间一定形成了一种不稳定的二元复合物。当该酶与T3 DNA、GTP、ATP和UTP一起孵育时获得的T3特异性RNA聚合酶、T3 DNA和新生RNA链之间的三元复合物对热(42℃)稳定,并且仅被聚乙烯硫酸盐缓慢失活。形成抗聚阴离子三元复合物的最佳温度为30℃,而T3 RNA链的延伸在38℃时进行得最快。

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