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二甲基亚砜对噬菌体T3诱导的RNA聚合酶转录的影响。

Influence of dimethylsulfoxide on transcription by bacteriophage T3-induced RNA polymerase.

作者信息

Musielski H, Mann W, Laue R, Michel S

出版信息

Z Allg Mikrobiol. 1981;21(6):447-56. doi: 10.1002/jobm.3630210606.

Abstract

Dimethylsulfoxide (DMSO) up to 25% (v/v) does not cause irreversible alterations of T3 DNA at 42.5 degrees C as assayed by transcription with T3-specific RNA polymerase. The optimal temperature for the formation of polyanion-resistant ternary complexes of the enzyme, T3 DNA, and nascent RNA chains is lowered by 12.5 degrees C in the presence of 20% (v/v) DMSO. The same solvent concentration, however, decreased the temperature optimal for T3 RNA chain elongation by only 2.5 degrees C, indicating that DMSO preferably affects the initiation of T3 RNA synthesis. DMSO accelerates the loss of T3-specific RNA polymerase activity at 24.5 degrees C. Nevertheless, the speed with which the binary complexes between the phage RNA polymerase and DNA are inactivated by heat (42.5 degrees C) is not altered in presence of 20% (v/v) DMSO. The binding of T3-induced RNA polymerase to T3 DNA in polyanion-resistant ternary complexes is influenced by DMSO which makes the enzyme accessible to the inhibitory action of polyvinyl sulfate. Elongation of T3 RNA chains is slowed down by 20% (v/v) DMSO.

摘要

通过用T3特异性RNA聚合酶转录检测,高达25%(v/v)的二甲基亚砜(DMSO)在42.5℃时不会引起T3 DNA的不可逆改变。在20%(v/v)DMSO存在下,该酶、T3 DNA和新生RNA链形成抗聚阴离子三元复合物的最适温度降低了12.5℃。然而,相同的溶剂浓度仅使T3 RNA链延伸的最适温度降低了2.5℃,这表明DMSO主要影响T3 RNA合成的起始。DMSO在24.5℃时加速了T3特异性RNA聚合酶活性的丧失。尽管如此,在20%(v/v)DMSO存在下,噬菌体RNA聚合酶与DNA之间的二元复合物被热(42.5℃)灭活的速度并未改变。DMSO影响抗聚阴离子三元复合物中T3诱导的RNA聚合酶与T3 DNA的结合,这使得该酶易于受到聚硫酸乙烯酯的抑制作用。20%(v/v)DMSO会减缓T3 RNA链的延伸。

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