化学
血红素
电子传输链
细胞色素c
血红素蛋白
单层
卟啉
氧化还原
辅因子
基质(水族馆)
结晶学
电子转移
生物物理学
立体化学
光化学
线粒体
无机化学
生物化学
酶
生物
海洋学
地质学
作者
Nadav Amdursky,İsrael Pecht,Mordechai Sheves,David Cahen
摘要
Monolayers of the redox protein Cytochrome C (CytC) can be electrostatically formed on an H-terminated Si substrate, if the protein- and Si-surface are prepared so as to carry opposite charges. With such monolayers we study electron transport (ETp) via CytC, using a solid-state approach with macroscopic electrodes. We have revealed that currents via holo-CytC are almost 3 orders of magnitude higher than via the heme-depleted protein (→ apo-CytC). This large difference in currents is attributed to loss of the proteins' secondary structure upon heme removal. While removal of only the Fe ion (→ porphyrin-CytC) does not significantly change the currents via this protein at room temperature, the 30-335 K temperature dependence suggests opening of a new ETp pathway, which dominates at high temperatures (>285 K). These results suggest that the cofactor plays a major role in determining the ETp pathway(s) within CytC.
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