首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Effect of N-domain on the stability of elongation factor Ts from Thermus thermophilus
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Effect of N-domain on the stability of elongation factor Ts from Thermus thermophilus

机译:N结构域对嗜热栖热菌延伸因子Ts稳定性的影响

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摘要

Elongation factor Ts (EF-Ts) from Thermus thermophilus forms a stable, functionally active homodimer in solution. Its monomer is composed of two domains: amino-terminal domain containing 50 amino acid residues and a larger, 146 residues long, C-domain which participates in dimerization of EF-Ts. Effect of removal of the N-domain on the conformational stability of EF-Ts has been studied. For comparison, the stabilities of both the full-length EF-Ts and its C-domain were studied by differential scanning calorimetry, electronic absorption and fluorescence spectroscopies over a pH range from 4 to ~13. Thermal denaturation of EF-Ts and of C-domain, followed by circular dichroism at 222 nm, at pH 7.0, and the pH dependence of the fluorescence of the single tryptophan 30 residue indicate a conformational instability of the N-domain. While N-domain does not affect the stability of full-length EF-Ts at acidic pH, its removal leads to stabilization of the rest of the protein at basic pH. This is reflected by higher values of transition temperatures and calorimetric enthalpies of C-domain as compared to the full-length EF-Ts. High mobility of the N-domain in alkaline pH conditions decreased the thermal stability of covalently linked C-domain of EF-Ts. An increase in intramolecular interactions at acidic pH together with a decrease of conformational entropies of the thermally denatured proteins most likely diminishes this destabilization effect.
机译:来自嗜热栖热菌的延伸因子Ts(EF-Ts)在溶液中形成稳定的,具有功能活性的同型二聚体。它的单体由两个结构域组成:包含50个氨基酸残基的氨基末端结构域和一个更大的,146个残基长的C结构域,参与EF-Ts的二聚化。研究了去除N结构域对EF-Ts构象稳定性的影响。为了进行比较,通过差示扫描量热法,电子吸收和荧光光谱在4至〜13的pH范围内研究了全长EF-Ts及其C结构域的稳定性。 EF-Ts和C域的热变性,然后在7.0 nm的222 nm处发生圆二色性,单个色氨酸30残基的荧光的pH依赖性表明N域的构象不稳定性。虽然N结构域在酸性pH下不影响全长EF-T的稳定性,但将其去除会导致其余蛋白质在碱性pH下稳定。与全长EF-T相比,这是通过更高的转变温度和C域的量热焓值反映出来的。 N结构域在碱性pH条件下的高迁移率降低了EF-Ts共价连接的C结构域的热稳定性。在酸性pH下分子内相互作用的增加以及热变性蛋白质的构象熵的减少最有可能消除这种不稳定作用。

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