Title : Dimeric ferrochelatase bridges ABCB7 and ABCB10 homodimers in an architecturally defined molecular complex required for heme biosynthesis.

Pub. Date : 2019 Sep

PMID : 30765471






3 Functional Relationships(s)
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1 Dimeric ferrochelatase bridges ABCB7 and ABCB10 homodimers in an architecturally defined molecular complex required for heme biosynthesis. Heme ATP binding cassette subfamily B member 7 Homo sapiens
2 In ABCB7-depleted cells, defective heme biosynthesis resulted from translational repression of ALAS2 by iron regulatory proteins and from decreased stability of the terminal enzyme ferrochelatase. Heme ATP binding cassette subfamily B member 7 Homo sapiens
3 Our studies not only underscore the importance of ABCB7 for mitochondrial Fe-S biogenesis and iron homeostasis, but also provide the biochemical characterization of a multiprotein complex required for heme biosynthesis. Heme ATP binding cassette subfamily B member 7 Homo sapiens