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3.D.3.5.5
The Ubiquinol-cytochrome oxidase supercomplex with 8 subunits. In the mycobacterial electron-transport chain, respiratory complex III passes electrons from menaquinol to complex IV, which in turn reduces oxygen, the terminal acceptor. Electron transfer is coupled to transmembrane proton translocation. Wiseman et al. 2018 isolated, biochemically characterized, and determined the structure of the obligate III2IV2 supercomplex from Mycobacterium smegmatis. The supercomplex has quinol:O2 oxidoreductase activity without exogenous cytochrome c and includes a superoxide dismutase subunit that may detoxify reactive oxygen species produced during respiration. Menaquinone is bound in both the Qo and Qi sites of complex III. The complex III-intrinsic diheme cytochrome cc subunit, which functionally replaces both cytochrome c1 and soluble cytochrome c in canonical electron-transport chains, displays two conformations: one in which it provides a direct electronic link to complex IV and another in which it serves as an electrical switch interrupting the connection (Wiseman et al. 2018).

Accession Number:A0R049
Protein Name:Cytochrome c oxidase subunit 3
Length:203
Molecular Weight:22181.00
Species:Mycobacterium smegmatis (strain ATCC 700084 / mc(2)155) [246196]
Number of TMSs:5
Location1 / Topology2 / Orientation3: Cell membrane1 / Multi-pass membrane protein2
Substrate hydron

Cross database links:

Structure:
6ADQ   6HWH     

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Predict TMSs (Predict number of transmembrane segments)
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FASTA formatted sequence
1:	MTSAVGTSGT AITSRVHSLN RPNMVSVGTI VWLSSELMFF AGLFAMYFTA RAQAGGAWPP 
61:	EPTELNLALA VPVTLVLIAS SFTCQMGVFA AERGDVFGLR RWYVITFLMG LFFVLGQGYE 
121:	YIHLVEHGTT IPGSAYGSVF YLATGFHGLH VIGGLVAFVL LLARTKMSKF TPAQATAAIV 
181:	VSYYWHFVDI VWIALFATIY FVR