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弹性蛋白及其类似物的聚五肽逆温度转变的差示扫描量热法研究。

Differential scanning calorimetry studies of the inverse temperature transition of the polypentapeptide of elastin and its analogues.

作者信息

Luan C H, Harris R D, Prasad K U, Urry D W

机构信息

Laboratory of Molecular Biophysics, School of Medicine, University of Alabama at Birmingham, 35294.

出版信息

Biopolymers. 1990 Dec;29(14):1699-706. doi: 10.1002/bip.360291403.

Abstract

Differential scanning calorimetry studies have been carried out on the sequential polypeptide of elastin, (L-Val1-L-Pro2-Gly3-L-Val4-Gly5)n, abbreviated as PPP, and its more hydrophobic analogues (L-Leu1-L-Pro2-Gly3-L-Val4-Gly5)n, referred to as Leu1-PPP, and (L-Ile1-L-Pro2-Gly3-L-Val4-Gly5)n, referred to as Ile1-PPP Consistent with inverse temperature transitions, the temperatures of the transitions for which maximum heat absorption occurs are inversely proportional to the hydrophobicities of the polypentapeptides (31 degrees C for PPP, 16 degrees C for Leu1-PPP, and 12 degrees C for Ile1-PPP), and the endothermic heats of the transitions are small and increase with increasing hydrophobicity, i.e., 1.2, 2.9, and 3.0 kcal/mol pentamer for PPP, Leu1-PPP, and Ile1-PPP, respectively. Previous physical characterizations of the polypentapeptides have demonstrated the occurrence of an inverse temperature transition since increase in order, as the temperature is raised above that of the transition, has been repeatedly observed using different physical characterizations. Furthermore, the studies demonstrated identical conformations for PPP and Il21-PPP above and below the transition. Both heats and temperatures of the transitions vary with hydrophobicity, but not in simple proportionality.

摘要

已对弹性蛋白的连续五肽(L-缬氨酸1-L-脯氨酸2-甘氨酸3-L-缬氨酸4-甘氨酸5)n(简称为PPP)及其疏水性更强的类似物(L-亮氨酸1-L-脯氨酸2-甘氨酸3-L-缬氨酸4-甘氨酸5)n(称为Leu1-PPP)和(L-异亮氨酸1-L-脯氨酸2-甘氨酸3-L-缬氨酸4-甘氨酸5)n(称为Ile1-PPP)进行了差示扫描量热法研究。与反向温度转变一致,发生最大热吸收的转变温度与五肽的疏水性成反比(PPP为31℃,Leu1-PPP为16℃,Ile1-PPP为12℃),并且转变的吸热热很小,且随疏水性增加而增加,即PPP、Leu1-PPP和Ile1-PPP的五聚体分别为1.2、2.9和3.0千卡/摩尔。之前对五肽的物理表征已证明存在反向温度转变,因为当温度升高到转变温度以上时,有序度增加,这已通过不同的物理表征反复观察到。此外,研究表明PPP和Il21-PPP在转变温度上下具有相同的构象。转变的热和温度都随疏水性而变化,但并非简单的比例关系。

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