Doi Masamitsu, Nishi Yoshinori, Uchiyama Susumu, Nishiuchi Yuji, Nakazawa Takashi, Ohkubo Tadayasu, Kobayashi Yuji
Department of Materials Science, Wakayama National College of Technology, Gobo, Wakayama 644-0023, Japan.
J Am Chem Soc. 2003 Aug 20;125(33):9922-3. doi: 10.1021/ja035997v.
Collagen model peptide (Pro-Pro-Gly)10 has a triple helical structure and undergoes a thermal transition to a single random coil structure. The transition temperature of the analogous model peptides depends largely on amino acid substitution. Substitution of Pro by 4-hydroxyproline (Hyp) or 4-fluoroproline (fPro) has especially attracted attention because the position of substitution and chirality of the hydroxyl group or fluorine atom affect the transition temperatures. Here, we demonstrated that (4(S)-fPro-Pro-Gly)10 takes a triple helical structure, but (4(R)-fPro-Pro-Gly)10 exists in a single chain structure. This is not consistent with the case of Hyp substitution in our previous report where both (4(S)-Hyp-Pro-Gly)10 and (4(R)-Hyp-Pro-Gly)10 are in a single random coil state.
胶原蛋白模型肽(Pro-Pro-Gly)10具有三螺旋结构,并经历热转变为单无规卷曲结构。类似模型肽的转变温度在很大程度上取决于氨基酸取代。用4-羟脯氨酸(Hyp)或4-氟脯氨酸(fPro)取代脯氨酸尤其受到关注,因为取代位置以及羟基或氟原子的手性会影响转变温度。在此,我们证明了(4(S)-fPro-Pro-Gly)10呈三螺旋结构,但(4(R)-fPro-Pro-Gly)10以单链结构存在。这与我们之前报告中Hyp取代的情况不一致,在之前的报告中(4(S)-Hyp-Pro-Gly)10和(4(R)-Hyp-Pro-Gly)10均处于单无规卷曲状态。