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Conformational studies of a synthetic peptide corresponding to the repeat motif of C hordein.

机译:对应于大麦醇溶蛋白重复基序的合成肽的构象研究。

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摘要

C hordein, a storage protein from barley grains, has an Mr of about 53,000, and consists predominantly of repeated octapeptides with a consensus sequence of Pro-Gln-Gln-Pro-Phe-Pro-Gln-Gln. Previously reported hydrodynamic and c.d. studies indicate the presence of beta-turns, the repetitive nature of which may lead to the formation of a loose spiral. In order to study these turns we have compared the structures of a synthetic peptide corresponding to the consensus repeat motif and total C hordein by using c.d. and Fourier-transform i.r. spectroscopy. The synthetic peptide exhibited spectra typical of beta I/III reverse turns when dissolved in trifluoroethanol at 22 degrees C and in water at 70 degrees C, but 'random-coil'-like spectra in water at 22 degrees C. The whole protein also showed increases in beta I/III reverse turns when dissolved in increasing concentrations of trifluoroethanol (50-100%, v/v) or heated in ethanol/water (7:3, v/v). Two cryogenic solvent systems were used to determine the c.d. spectra of the peptide and protein at temperatures down to -100 degrees C. Methanol/glycerol (9:1, v/v) and ethanediol/water (2:1, v/v) were selected as analogues of trifluoroethanol/water and water respectively. The peptide exhibited beta I/III-reverse-turn and 'random-coil'-like spectra in methanol/glycerol and ethanediol/water respectively at 22 degrees C, but a spectrum similar to that of a poly-L-proline II helix in both solvents at -100 degrees C. Similarly the proportion of this spectral type also increased when the whole protein was cooled in both solvents. These results indicate that a poly-L-proline II conformation at low temperatures is in equilibrium with a beta I/III-turn-rich conformation at higher temperatures. The latter conformation is also favoured in solvents of low dielectric constant such as trifluoroethanol. The 'random-coil'-like spectra exhibited by the protein and peptide in high-dielectric-constant solvents at room temperature may result from a mixture of the two conformations rather than from the random-coil state.
机译:大麦籽粒中的一种储藏蛋白大麦醇溶蛋白的Mr约为53,000,主要由重复的八肽组成,具有与Pro-Gln-Gln-Pro-Phe-Pro-Gln-Gln的共有序列。先前报道的流体动力学和c.d.研究表明存在β-转弯,其重复性可能导致形成松散的螺旋。为了研究这些转折,我们使用c.d比较了与共有重复基序和总C大麦醇溶蛋白相对应的合成肽的结构。和傅里叶变换光谱学。当在22°C的三氟乙醇中和70°C的水中溶解时,合成肽显示出典型的βI / III反向旋转光谱,但在22°C的水中却显示出“无规卷曲”样光谱。当溶于浓度不断增加的三氟乙醇(50-100%,v / v)或在乙醇/水(7:3,v / v)中加热时,βI / III反向增加。使用两个低温溶剂系统确定c.d.肽和蛋白质在低至-100摄氏度的温度下的质谱图。选择甲醇/甘油(9:1,v / v)和乙二醇/水(2:1,v / v)作为三氟乙醇/水和水的类似物分别。该肽在22°C下分别在甲醇/甘油和乙二醇/水中显示出βI / III逆转和'无规卷曲'样光谱,但与聚L-脯氨酸II螺旋光谱相似。两种溶剂都在-100摄氏度下进行。类似地,当在两种溶剂中冷却整个蛋白质时,这种光谱类型的比例也会增加。这些结果表明,低温下的聚-L-脯氨酸II构象与高温下的富含β-I/ III-转角的构象处于平衡状态。在低介电常数的溶剂如三氟乙醇中,后一种构型也是有利的。蛋白质和肽在室温下在高介电常数溶剂中表现出的“无规卷曲”样光谱可能是两种构象的混合物,而不是无规卷曲状态。

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