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Modularity of membrane-bound charge-translocating protein complexes

期刊

BIOCHEMICAL SOCIETY TRANSACTIONS
卷 49, 期 6, 页码 2669-2685

出版社

PORTLAND PRESS LTD
DOI: 10.1042/BST20210462

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资金

  1. FundacAo para a Ciencia e a Tecnologia [PTDC/BIA-BQM/28827/2017, PTDC/BIA-BQM/30528/2017]
  2. FCT, Portugal [UIDB/04046/2020, UIDP/04046/2020]
  3. FCT [UIDB/04612/2020, UIDP/04612/2020]
  4. FEDER through COMPETE2020-POCI
  5. [LISBOA-01-0145-FEDER-007660]
  6. Fundação para a Ciência e a Tecnologia [PTDC/BIA-BQM/30528/2017, PTDC/BIA-BQM/28827/2017] Funding Source: FCT

向作者/读者索取更多资源

Energy transduction is the process of converting energy from one form to another, enabling life to exist. The transmembrane difference of electrochemical potential serves as a universal energy currency. Modular enzymes allow for different catalytic and charge-translocating modules to combine, forming energy-transducing complexes.
Energy transduction is the conversion of one form of energy into another; this makes life possible as we know it. Organisms have developed different systems for acquiring energy and storing it in useable forms: the so-called energy currencies. A universal energy currency is the transmembrane difference of electrochemical potential (Delta partial derivative mu). This results from the translocation of charges across a membrane, powered by exergonic reactions. Different reactions may be coupled to charge-translocation and, in the majority of cases, these reactions are catalyzed by modular enzymes that always include a transmembrane subunit. The modular arrangement of these enzymes allows for different catalytic and charge-translocating modules to be combined. Thus, a transmembrane charge-translocating module can be associated with different catalytic subunits to form an energy-transducing complex. Likewise, the same catalytic subunit may be combined with a different membrane charge-translocating module. In this work, we analyze the modular arrangement of energy-transducing membrane complexes and discuss their different combinations, focusing on the charge-translocating module.

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