Havsteen B H
Biochemisches Institut der Medizinischen Fakultät Christian-Albrechts-Universität Kiel, Germany.
J Protein Chem. 1999 Oct;18(7):791-9. doi: 10.1023/a:1020637703244.
Although the conformational changes accompanying the oxidation of ferrocytochrome c by the transfer of an electron to cytochrome a are small, they may contribute to the regulation of the electron transfer by transient storage of the liberated energy as strain and atomic vibrations. Both the electron transfer and the conformational changes seem to be controlled by an attractor, i.e. by a manifestation of a deterministic chaos. The putative attractor is regular and is, for the reaction involving the inner monomer of ferricytochrome c (I), of the order of 3.03 +/- 0.03. The conformational changes involving the outer monomer of ferricytochrome c (O) seem also to be controlled by a regular attractor, but its order is 4.2 +/- 0.2. The low order of the coupled reactions of electron transfer and conformational change suggests that it is essential to the electron transfer process in the respiratory chain. Since the order of attractors of other proteins correlates with the vectorial description of the function (1.0 for myoglobin, 2.0 for chymotrypsin and lysozyme, 3.0 for an abenzyme), the value for cyt. c indicates that not only the electron transfer, but also an additional reaction, e.g. the conformational change, are essential for the function of this protein. Hence, the study of protein attractors may yield information on important details, which could not be obtained by other methods.
尽管亚铁细胞色素c通过向细胞色素a转移电子而发生氧化时伴随的构象变化很小,但它们可能通过将释放的能量以应变和原子振动的形式暂时储存,从而有助于电子转移的调节。电子转移和构象变化似乎都受一个吸引子控制,即由确定性混沌的一种表现形式控制。假定的吸引子是规则的,对于涉及高铁细胞色素c内部单体(I)的反应,其阶数约为3.03±0.03。涉及高铁细胞色素c外部单体(O)的构象变化似乎也受一个规则吸引子控制,但其阶数为4.2±0.2。电子转移和构象变化耦合反应的低阶数表明,这对呼吸链中的电子转移过程至关重要。由于其他蛋白质吸引子的阶数与功能的矢量描述相关(肌红蛋白为1.0,胰凝乳蛋白酶和溶菌酶为2.0,一种抗体酶为3.0),细胞色素c的值表明,不仅电子转移,而且额外的反应,例如构象变化,对该蛋白质的功能都是必不可少的。因此,对蛋白质吸引子的研究可能会产生通过其他方法无法获得的关于重要细节的信息。