Takahashi Yo-ta, Sasaki Hiroaki, Takayama Shin-ichi J, Mikami Shin-ichi, Kawano Shin, Mita Hajime, Sambongi Yoshihiro, Yamamoto Yasuhiko
Department of Chemistry, University of Tsukuba, Tsukuba 305-8571, Japan.
Biochemistry. 2006 Sep 12;45(36):11005-11. doi: 10.1021/bi061164g.
Thermophile Hydrogenobacter thermophilus cytochrome c(552) (HT) is a stable protein with denaturation temperatures (T(m)) of 109.8 and 129.7 degrees C for the oxidized and reduced forms, respectively [Uchiyama, S., Ohshima, A., Nakamura, S., Hasegawa, J., Terui, N., Takayama, S. J., Yamamoto, Y., Sambongi, Y., and Kobayashi, Y. (2004) J. Am. Chem. Soc. 126, 14684-14685]. The removal of a single hydroxyl group from the hydrophobic core of HT, through the replacement of a Tyr by Phe, resulted in further elevation of the T(m) value of the oxidized form by approximately 6 degrees C, the T(m) value of the reduced one remaining essentially unaltered. As a result, the redox potential of the mutant with higher stability in the oxidized form exhibited a negative shift of approximately 20 mV relative to that of wild-type HT in an enthalpic manner. These findings indicated that the redox function of a protein can be enthalpically regulated through the stability of the oxidized form by altering the contextual stereochemical packing of hydrophobic residues in the protein interior using protein engineering.
嗜热栖热菌细胞色素c(552)(HT)是一种稳定的蛋白质,其氧化态和还原态的变性温度(Tm)分别为109.8和129.7℃[内山,S.,大岛,A.,中村,S.,长谷川,J.,照井,N.,高山,S.J.,山本,Y.,三宝木,Y.,和小林,Y.(2004)美国化学会志126,14684 - 14685]。通过用苯丙氨酸取代酪氨酸,从HT的疏水核心中去除单个羟基,导致氧化态的Tm值进一步升高约6℃,还原态的Tm值基本保持不变。结果,在氧化态具有更高稳定性的突变体的氧化还原电位相对于野生型HT以焓的方式呈现约20 mV的负移。这些发现表明,通过蛋白质工程改变蛋白质内部疏水残基的上下文立体化学堆积,可以通过氧化态的稳定性对蛋白质的氧化还原功能进行焓调控。