Membrane-attached mammalian cytochromes P450: An overview of the membrane's effects on structure, drug binding, and interactions with redox partners
Мембраносвязанные цитохромы P450 млекопитающих: обзор влияния мембраны на структуру, связывание лекарственных средств и взаимодействие с редокс-партнёрами
2018-03-05
SCID: 54.1/mxu76685
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endoplasmic reticulummammalian cytochromes P450membrane environmentredox partner interactionssubstrate access channels
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Abstract (AI)
Mammalian cytochromes P450 are an important class of enzymes involved in the biotransformation of many endo- and exogenous compounds. Cytochrome P450 isoforms are attached to the membrane of the endoplasmic reticulum or mitochondria, and their catalytic domains move along the membrane surface while being partially immersed in the membrane environment. Their active sites are connected to both the membrane and cytosolic environments via a complex network of access channels. Consequently, they can accept substrates from both environments. The membrane also supports the interactions of cytochromes P450 with their redox partners. In this review, we provide an overview of current knowledge of the structure, flexibility, and interactions with substrates and redox partners of cytochrome P450 on membranes, amalgamating information derived from both experiments and simulations.
Key Findings
1
Mammalian cytochromes P450 are anchored to endoplasmic-reticulum or mitochondrial membranes, with catalytic domains moving along and partially immersed in the membrane.
2
Membrane association supports cytochrome P450 interactions with redox partners required for catalysis.
3
The membrane influences cytochrome P450 structure and flexibility, as well as interactions with substrates and redox partners.
4
The review integrates experimental and simulation-based knowledge of membrane-bound cytochrome P450 structure, dynamics, substrate binding, and partner interactions.
5
Their active sites connect membrane and cytosolic environments through a complex network of access channels, enabling substrate uptake from both environments.
Research Object
membrane-attached mammalian cytochrome P450 enzymes on endoplasmic reticulum or mitochondrial membranes
Research Subject
the effects of the membrane environment on cytochrome P450 structure, flexibility, substrate binding, and interactions with redox partners
Publication Details
Publication Date
2018-03-05
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