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Analysis of a hybrid TATA box binding protein originating from mesophilic and thermophilic donor organisms

机译:源自中温和嗜热供体生物体的杂交TATA盒结合蛋白的分析

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The TATA Box Binding Protein (TBP) is a 20 kD protein that is essential and universally conserved in eucarya and archaea. Especially among archaea, organisms can be found that live below 0°C as well as organisms that grow above 100°C. The archaeal TBPs show a high sequence identity and a similar structure consisting of α-helices and β-sheets that are arranged in a saddle-shape 2-symmetric fold. In previous studies, we have characterized the thermal stability of thermophilic and mesophilic archaeal TBPs by infrared spectroscopy and showed the correlation between the transition temperature (T_m) and the optimal growth temperature (OGT) of the respective donor organism. In this study, a "new" mutant TBP has been constructed, produced, purified and analyzed for a deeper understanding of the molecular mechanisms of thermoadaptation. The β-sheet part of the mutant consists of the TBP from Methanothermobacter thermoautotrophicus (OGT 65°C, MtTBP65) whose α-helices have been exchanged by those of Methanosarcina mazei (OGT 37°C, MmTBP37). The Hybrid-TBP irreversibly aggregates after thermal unfolding just like MmTBP37 and MtTBP65, but the T_m lies between that of MmTBP37 and MtTBP65 indicating that the interaction between the α-helical and β-sheet part of the TBP is crucial for the thermal stability. The temperature stability is probably encoded in the variable α-helices that interact with the highly conserved and DNA binding β-sheets.
机译:TATA盒结合蛋白(TBP)是一种20 kD的蛋白质,在真核生物和古生菌中必不可少且普遍保守。特别是在古细菌中,可以发现在0°C以下生活的生物以及在100°C以上生长的生物。古细菌TBP显示出高序列同一性,并且具有由α-螺旋和β-折叠构成的相似结构,所述α-螺旋和β-折叠以鞍形2-对称折叠排列。在以前的研究中,我们通过红外光谱表征了嗜热和中温古细菌TBP的热稳定性,并显示了各个供体生物的转变温度(T_m)和最佳生长温度(OGT)之间的相关性。在这项研究中,已经构建,生产,纯化和分析了“新”突变体TBP,以更深入地了解热适应的分子机制。突变体的β-折叠部分由来自热自养甲烷甲烷杆菌(OGT 65°C,MtTBP65)的TBP组成,其α螺旋已被马氏甲烷八叠球菌(OGT 37°C,MmTBP37)交换。杂合-TBP在热解开后不可逆地聚集,就像MmTBP37和MtTBP65一样,但是T_m位于MmTBP37和MtTBP65之间,表明TBP的α-螺旋部分和β-折叠部分之间的相互作用对于热稳定性至关重要。温度稳定性可能编码在与高度保守且与DNA结合的β-折叠相互作用的可变α螺旋中。

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