2003Europe PMC (PubMed Central)Requires access

The Structure and Catalytic Mechanism of ATP Synthase

Zhang‐Lin Ni, Jia‐Mian Wei

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Abstract

ATP synthase (F 1F o complex) is a key enzyme in energy conversion in all living organisms. During ATP synthesis, ATP synthase uses a proton gradient and the associated membrane potential to synthesize ATP. It can also catalyze the reverse reaction of ATP hydrolysis to generate a proton gradient. NMR, x ray analysis, genetics, chemical cross linking are combined and great progress in the understanding of the structure of the intact ATPase and its constituent subunits has been made. Among them, most works are focused on the ATP synthase of E.coli . The mechanism of converting an electrochemical gradient of protons or Na + ions across the membrane into rotational torque by the F o motor of the ATPase has been proposed by a two half channel or a one channel model. Binding change mechanism proposed by Boyer promoted greatly the understanding of the mechanism of the catalytic action of the F type ATP synthase. The mechanism of action of ATP synthase is controversial now.

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ATP synthase (F 1F o complex) is a key enzyme in energy conversion in all living organisms. During ATP synthesis, ATP synthase uses a proton gradient and the associated membrane potential to synthesize ATP. It can also catalyze the reverse reaction of ATP hydrolysis to generate a proton gradient. NMR, x ray analysis, genetics, chemical cross linking are combined and great progress in the understanding of the structure of the intact ATPase and its constituent subunits has been made. Among them, most works are focused on the ATP synthase of E.coli . The mechanism of converting an electrochemical gradient of protons or Na + ions across the membrane into rotational torque by the F o motor of the ATPase has been proposed by a two half channel or a one channel model. Binding change mechanism proposed by Boyer promoted greatly the understanding of the mechanism of the catalytic action of the F type ATP synthase. The mechanism of action of ATP synthase is controversial now.

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Available abstract

ATP synthase (F 1F o complex) is a key enzyme in energy conversion in all living organisms. During ATP synthesis, ATP synthase uses a proton gradient and the associated membrane potential to synthesize ATP. It can also catalyze the reverse reaction of ATP hydrolysis to generate a proton gradient. NMR, x ray analysis, genetics, chemical cross linking are combined and great progress in the understanding of the structure of the intact ATPase and its constituent subunits has been made. Among them, most works are focused on the ATP synthase of E.coli . The mechanism of converting an electrochemical gradient of protons or Na + ions across the membrane into rotational torque by the F o motor of the ATPase has been proposed by a two half channel or a one channel model. Binding change mechanism proposed by Boyer promoted greatly the understanding of the mechanism of the catalytic action of the F type ATP synthase. The mechanism of action of ATP synthase is controversial now.

Key concepts: ATP synthase, ATP synthase gamma subunit, Electrochemical gradient, Chemiosmosis, ATP hydrolysis, ATPase, Chemistry, F-ATPase

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