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Hydrophobic Properties of tRNA with Varied Conformations Evaluated by an Aqueous Two-Phase System

机译:两相水相系统评估各种构型的tRNA的疏水性

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摘要

The surface properties of transfer RNA (tRNA) were analyzed using a poly(ethylene glycol)/dextran aqueous two-phase system (ATPS), where the surface net hydrophobicity (HFS) and the local hydrophobicity (LH) were evaluated based on the partition coefficient of tRNA in the ATPS. According to the evaluated HFS values, the surface of the tRNA molecule was hydrophilic at 20° -40 °C, and it became hydrophobic at 50° -80 °C because of the exposure of the intrinsic nucleobases of tRNA. In contrast, the LH values were found to be maximal at 20° -40 °C. The conformation of tRNA was investigated by Raman and circular dichroism (CD) spectroscopies, corroborating the results with the calculated prediction of its secondary structure (Mfold). It was shown that 66% of A-form structure existed at room temperature; the base stacking (θ265) was gradually decreased, and the A-form structure (θ208) was denatured along with a sigmoid curve against the temperature increase; the denatured secondary structures were observed above 50° C by Mfold prediction. The HFS value of the DNA duplex was found to be hydrophilic, compared to that of the single-stranded DNA, indicating that the exposure of nucleobases is a key factor of the hydrophobic properties of nucleotides. We conclude that the hydrophobic property of the tRNA surface was directly affected by its conformational transition.
机译:使用聚(乙二醇)/右旋糖酐水两相系统(ATPS)分析转移RNA(tRNA)的表面性质,其中基于分配评估了表面净疏水性(HFS)和局部疏水性(LH) ATPS中tRNA的系数。根据评估的HFS值,tRNA分子的表面在20°-40°C时具有亲水性,而在50°-80°C时则变为疏水性,这是因为tRNA的固有核碱基暴露在外。相反,发现LH值在20°-40°C时最大。通过拉曼光谱和圆二色性(CD)光谱学研究了tRNA的构象,通过计算得出的二级结构预测(Mfold)证实了该结果。结果表明,室温下存在66%的A型结构。随着温度的升高,基本堆积量(θ265)逐渐减小,A型结构(θ208)与S型曲线一起变性。通过Mfold预测在50℃以上观察到变性的二级结构。与单链DNA相比,发现DNA双链体的HFS值是亲水的,表明核碱基的暴露是核苷酸疏水性的关键因素。我们得出结论,tRNA表面的疏水性直接受到其构象转变的影响。

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