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Secondary Structure Changes and Thermal Stability of Plasma Membrane Proteins of Wheat Roots in Heat Stress

机译:高温胁迫下小麦根系质膜蛋白的二级结构变化和热稳定性

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The wheat roots membrane separates the cell from the environment around it and encloses the cell contents. The pro-tein secondary structure and thermal stability of the plasma membrane of wheat root have been characterized in D2O buffer from 20°C to 90°C by Attenuated total reflection Fourier transform infrared spectroscopy (ATR-FTIR). Quantitative analysis of the amide I band (1700 - 1600 cm–1) showed that the plasma membrane proteins contains 41% α-helix, 16% β-sheet, 18% turn, and 25% disorder structures at 20°C. At elevated temperatures from 25°C up to 90°C, the α-helix and the β-sheet structure unfold into turns and the disorder structure, with a major conformational transition occurring at 50°C. There is a rapid decline in H+-ATPase activity of plasma membrane from 35°C to 55°C and it remain very low level H+-ATPase activity of PM from 55°C to 90°C. Therefore the protein conformational transition was one of reasons of loses H+-ATPase activity of plasma membrane.
机译:小麦的根膜将细胞与周围的环境分开,并包裹细胞内的物质。通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)在20°C至90°C的D2O缓冲液中表征了小麦根质膜的蛋白质二级结构和热稳定性。酰胺I条带(1700-1600 cm–1)的定量分析表明,质膜蛋白在20°时含有41%的α-螺旋,16%的β-折叠,18%的折弯和25%的无序结构C。在从25°C到90°C的高温下,α-螺旋和β-折叠结构展开并变成无序结构,主要构象转变发生在50°C。从35°C到55°C,质膜的H + -ATPase活性迅速下降,而从55°C到90°C,其PM的H + -ATPase活性仍然很低。因此,蛋白质的构象转变是失去质膜H + -ATPase活性的原因之一。

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