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大肠杆菌核糖体蛋白L7/L12的二聚体/单体平衡及结构域分离

Dimer/monomer equilibrium and domain separations of Escherichia coli ribosomal protein L7/L12.

作者信息

Hamman B D, Oleinikov A V, Jokhadze G G, Traut R R, Jameson D M

机构信息

Department of Biochemistry and Biophysics, University of Hawaii, Honolulu 96822, USA.

出版信息

Biochemistry. 1996 Dec 24;35(51):16680-6. doi: 10.1021/bi9624189.

DOI:10.1021/bi9624189
PMID:8988004
Abstract

The dimer to monomer equilibrium and interdomain separations of cysteine variants of L7/L12 have been investigated using fluorescence spectroscopy. Steady-state polarization measurements on cysteine containing variants of L7/L12, labeled with 5-(iodoacetamido)fluorescein, demonstrated dimer to monomer dissociation constants near 30 nM for variants labeled at position 33, in the N-terminal domain, and positions 63 and 89, in the C-terminal domain. A dissociation constant near 300 nM was determined for a variant labeled at position 12, in the N-terminal domain. The polarization of a labeled C-terminal fragment did not change over the range of 200 microM to 1 nM, indicating that this construct remains monomeric at these concentrations, whereas a dimer to monomer dissociation constant near 300 nM was observed for an FITC labeled N-terminal fragment. Intersubunit fluorescence resonance energy self-transfer was observed when appropriate probes were attached to cysteines at residues 12 or 33, located in the N-terminal domain. Probes attached to cysteines at positions 63 or 89 in the C-terminal domain, however, did not exhibit intersubunit self-transfer. These results indicate that these residues in the C-terminal domains are, on average, separated by greater than 85 A. Intersubunit self-transfer does occur in a C-89 double mutation variant lacking 11 residues in the putative hinge region, indicating that the loss of the hinge region brings the two C-terminal domains closer together. Rapid subunit exchange between unlabeled wild-type L7/L12 and L7/L12 variants labeled in the N-terminal domain was also demonstrated by the loss of self-transfer upon mixing of the two proteins.

摘要

利用荧光光谱法研究了L7/L12半胱氨酸变体的二聚体与单体平衡以及结构域间的间距。对用5-(碘乙酰胺基)荧光素标记的L7/L12含半胱氨酸变体进行稳态极化测量,结果表明,在N端结构域的33位、C端结构域的63位和89位标记的变体,其二聚体与单体的解离常数接近30 nM。在N端结构域的12位标记的变体,测得的解离常数接近300 nM。标记的C端片段在200 μM至1 nM范围内极化没有变化,表明该构建体在这些浓度下保持单体状态,而FITC标记的N端片段的二聚体与单体解离常数接近300 nM。当在位于N端结构域的12或33位残基的半胱氨酸上连接合适的探针时,观察到亚基间荧光共振能量自转移。然而,连接在C端结构域63或89位半胱氨酸上的探针未表现出亚基间自转移。这些结果表明,C端结构域中的这些残基平均间距大于85 Å。在假定的铰链区缺少11个残基的C-89双突变变体中确实发生了亚基间自转移,这表明铰链区的缺失使两个C端结构域靠得更近。通过将未标记的野生型L7/L12与在N端结构域标记的L7/L12变体混合后自转移的丧失,也证明了未标记的野生型L7/L12与在N端结构域标记的L7/L12变体之间的快速亚基交换。

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[Preparation, isolation, and study of mutant forms of ribosomal protein L7/L12].
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