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温度敏感型突变体rho-115 rho-RNA二元复合物,以及底物和类似物的稳定作用。

Temperature-sensitive mutant rho-115 rho-RNA binary complexes, and stabilization by substrates and analogues.

作者信息

Kent R B, Guterman S K

出版信息

Mol Gen Genet. 1982;187(2):330-4. doi: 10.1007/BF00331139.

Abstract

To determine the molecular basis for the temperature-sensitivity of pure rho RNA-dependent ATPase from Escherichia coli mutant rho-115 cells, we investigated mutant rho binding to [3H] polyC as measured by retention on nitrocellulose filters. Complexes of wild-type rho and polyC incubated at 37 degrees C and 45 degrees C were similarly stable. At 37 degrees C mutant rho-polyC binary complexes were inactivated at a slightly faster rate than complexes with wild-type rho. Upon shift to 45 degrees C the quantity of rho-115 bound to polyC declined immediately, resulting in one-fifth of the quantity of complexes observed at 37 degrees C. Shift back to 37 degrees C restored the level of observed complexes by two-fold. The inclusion of ATP or the analogue beta-gamma methylene ATP during 45 degrees C incubation resulted in stable mutant rho-polyC complexes. The hydrolysis product ADP was also effective in stabilizing binary complexes at 45 degrees C but this effect was observed with an order of magnitude more ADP than ATP. Adenine, adenosine, AMP or Pi had no stabilizing effect. We conclude that the mutant rho-115 protein exhibits a structural instability as a result of binding RNA. Furthermore ATP confers a wild-type phenotype upon rho-115 protein, probably as a result of conformational change due to binding of this compound. The effect of ATP on the stability of mutant rho-polyC binary complexes supports the model of ATP modulation of rho-RNA interaction proposed by Galluppi and Richardson (1980).

摘要

为了确定来自大肠杆菌突变体rho - 115细胞的纯rho RNA依赖性ATP酶温度敏感性的分子基础,我们通过硝酸纤维素滤膜上的保留情况来研究突变体rho与[³H]多聚C的结合。野生型rho与多聚C在37℃和45℃孵育形成的复合物稳定性相似。在37℃时,突变体rho - 多聚C二元复合物的失活速度比野生型rho复合物略快。当温度升至45℃时,与多聚C结合的rho - 115数量立即下降,导致在37℃观察到的复合物数量仅为五分之一。温度再回到37℃时,观察到的复合物水平恢复了两倍。在45℃孵育期间加入ATP或其类似物β - γ亚甲基ATP可使突变体rho - 多聚C复合物稳定。水解产物ADP在45℃时也能有效稳定二元复合物,但所需ADP的量比ATP多一个数量级。腺嘌呤、腺苷、AMP或Pi没有稳定作用。我们得出结论,突变体rho - 115蛋白由于与RNA结合而表现出结构不稳定性。此外,ATP赋予rho - 115蛋白野生型表型,这可能是由于该化合物结合导致构象变化的结果。ATP对突变体rho - 多聚C二元复合物稳定性的影响支持了Galluppi和Richardson(1980年)提出的ATP调节rho - RNA相互作用的模型。

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