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非洲爪蟾转录因子 III A - 5S RNA 复合体的组装

Assembly of Xenopus transcription factor III A-5S RNA complex.

作者信息

Callaci T P, Cai G Z, Lee J C, Daly T J, Wu C W

机构信息

E. A. Doisy Department of Biochemistry, St. Louis University School of Medicine, Missouri 63104.

出版信息

Biochemistry. 1990 May 15;29(19):4653-9. doi: 10.1021/bi00471a021.

Abstract

The regulation of Xenopus 5S rRNA gene expression involves multiple protein factors, among which is transcription factor III A (TFIIIA). This factor can be isolated as a protein-RNA complex. The assembly behavior of this complex was studied by sedimentation velocity and gel electrophoresis at pH 7.5 and 23 degrees C. The reaction boundary was monitored by the absorbance at 260 nm; thus, the shape of the boundary reflects mainly RNA or RNA-containing complexes. Values for the weight-average sedimentation coefficient (S20,w) change with protein-RNA concentration. At low concentrations, values of S20,w increase with increasing concentration. The extrapolated value for S20,w at infinite dilution is 5.2 S, the same value for free Xenopus rRNA under the same experimentation conditions. Furthermore, the same value of S20,w at a specific RNA concentration can be obtained either by dilution of a concentrated sample or by concentrating a diluted one. These results indicate that complex formation can be described by a reversible process. When the data are analyzed by computer fitting, the simplest model that fits the sedimentation data is that TFIIIA and RNA form a 1:1 complex which self-aggregates to a dimer. The sedimentation coefficients (S020,w) of PR and (PR)2 are 7.5 and 10.6 S, respectively, where PR and (PR)2 are the 1:1 TFIIIA-RNA complex and its dimer, respectively. The protein-RNA interaction was also investigated by gel electrophoresis. The resolved components were identified by differential staining for protein and RNA on a single gel. One band corresponding to free 5S rRNA was detected in addition to two bands which stained for both protein and nucleic acids.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

非洲爪蟾5S rRNA基因表达的调控涉及多种蛋白质因子,其中包括转录因子IIIA(TFIIIA)。该因子可以作为一种蛋白质-RNA复合物分离出来。在pH 7.5和23摄氏度条件下,通过沉降速度和凝胶电泳研究了该复合物的组装行为。通过监测260 nm处的吸光度来观察反应边界;因此,边界的形状主要反映RNA或含RNA的复合物。重均沉降系数(S20,w)的值随蛋白质-RNA浓度而变化。在低浓度时,S20,w的值随浓度增加而增大。在无限稀释条件下,S20,w的外推值为5.2 S,与相同实验条件下非洲爪蟾游离rRNA的值相同。此外,在特定RNA浓度下,通过稀释浓缩样品或浓缩稀释样品均可获得相同的S20,w值。这些结果表明,复合物的形成可以用一个可逆过程来描述。当通过计算机拟合分析数据时,拟合沉降数据的最简单模型是TFIIIA和RNA形成1:1复合物,该复合物自聚合成二聚体。PR和(PR)2的沉降系数(S020,w)分别为7.5和10.6 S,其中PR和(PR)2分别是1:1的TFIIIA-RNA复合物及其二聚体。还通过凝胶电泳研究了蛋白质-RNA相互作用。通过在单一凝胶上对蛋白质和RNA进行差异染色来鉴定分离的组分。除了两条同时染蛋白质和核酸的条带外,还检测到一条对应游离5S rRNA的条带。(摘要截短于250字)

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