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Tracing the Pathways of Waters and Protons in Photosystem II and Cytochrome c Oxidase

机译:在光系统II和细胞色素c氧化酶中追踪水和质子的路径

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Photosystem II (PSII) uses water as the terminal electron donor, producing oxygen in the Mn 4 CaO 5 oxygen evolving complex (OEC), while cytochrome c oxidase (CcO) reduces O 2 to water in its heme–Cu binuclear center (BNC). Each protein is oriented in the membrane to add to the proton gradient. The OEC, which releases protons, is located near the P-side (positive, at low-pH) of the membrane. In contrast, the BNC is in the middle of CcO, so the protons needed for O 2 reduction must be transferred from the N-side (negative, at high pH). In addition, CcO pumps protons from N- to P-side, coupled to the O 2 reduction chemistry, to store additional energy. Thus, proton transfers are directly coupled to the OEC and BNC redox chemistry, as well as needed for CcO proton pumping. The simulations that study the changes in proton affinity of the redox active sites and the surrounding protein at different states of the reaction cycle, as well as the changes in hydration that modulate proton transfer paths, are described.
机译:光系统II(PSII)使用水作为末端电子供体,在Mn 4 CaO 5析氧复合物(OEC)中产生氧气,而细胞色素c氧化酶(CcO)在其血红素-铜双核中心(BNC)中将O 2还原为水。每种蛋白质都在膜中定向以增加质子梯度。释放质子的OEC位于膜的P侧(低pH值为正)附近。相反,BNC位于CcO中间,因此还原O 2所需的质子必须从N侧转移(在高pH下为负)。此外,CcO将质子从N侧泵送到P侧,再结合O 2还原化学物质来存储额外的能量。因此,质子传递直接耦合到OEC和BNC氧化还原化学反应,以及CcO质子泵送所需要的。描述了模拟,该模拟研究了在反应周期的不同状态下氧化还原活性位点和周围蛋白质的质子亲和力的变化,以及调节质子传递路径的水合变化。

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