Structure-function analysis of the heme-binding WWD domain in the bacterial holocytochrome c synthase, CcmFH

Heme is an essential co-factor for proteins involved with critical cellular functions, such as energy production and oxygen transport. Thus, understanding how heme interacts with proteins and is moved through cells is a fundamental biological question. This work studies the System I cytochrome bioge...

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Veröffentlicht in:mBio 2023-12, Vol.14 (6), p.e0150923
Hauptverfasser: Grunow, Amber L, Carroll, Susan C, Kreiman, Alicia N, Sutherland, Molly C
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Sprache:eng
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Zusammenfassung:Heme is an essential co-factor for proteins involved with critical cellular functions, such as energy production and oxygen transport. Thus, understanding how heme interacts with proteins and is moved through cells is a fundamental biological question. This work studies the System I cytochrome biogenesis pathway, which in some species (including ) is composed of eight integral membrane or membrane-associated proteins called CcmA-H that are proposed to function in two steps to transport and attach heme to apocytochrome . Cytochrome requires this heme attachment to function in electron transport chains to generate cellular energy. A conserved WWD heme-handling domain in CcmFH is analyzed and residues critical for heme interaction and holocytochrome synthase activity are identified. CcmFH is the third member of the WWD domain-containing heme-handling protein family to undergo a comprehensive structure-function analysis, allowing for comparison of heme interaction across this protein family.
ISSN:2150-7511
2150-7511
DOI:10.1128/mbio.01509-23