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An adaptor for feedback regulation of heme biosynthesis by a mitochondrial protease
Journal article   Peer reviewed

An adaptor for feedback regulation of heme biosynthesis by a mitochondrial protease

Thomas Cottle, Lydia Joh, Cori Posner, Adam DeCosta, Dean R Campagna, Mark D Fleming, Sarah Ducamp and Julia R Kardon
Science (American Association for the Advancement of Science), Vol.393(6810), pp.eads5397-eads5397
07/30/2026
Handle:
https://hdl.handle.net/10192/79968
PMID: 42531414

Abstract

5-Aminolevulinate Synthetase - genetics 5-Aminolevulinate Synthetase - metabolism Animals Endopeptidase Clp - metabolism Erythropoiesis Feedback, Physiological HEK293 Cells Heme - biosynthesis Humans Mitochondria - enzymology Mitochondrial Proteins - genetics Mitochondrial Proteins - metabolism Nuclear Proteins - metabolism Proteolysis
Heme biosynthesis is tightly coordinated to support essential functions without accumulating toxic porphyrins and depleting cellular iron. Heme induces degradation of the heme biosynthetic enzyme, 5-aminolevulinate synthase (ALAS), by the mitochondrial caseinolytic protease complex CLPX-CLPP (CLPXP), but the mechanism for heme-triggered degradation had not been elucidated. We found that polymerase delta-interacting protein 2 (POLDIP2) is a heme-sensing adaptor protein sufficient to reconstitute negative feedback degradation of ALAS by CLPXP. POLDIP2 was necessary to support ALAS turnover in cells and regulate heme production during erythropoiesis. POLDIP2 directly recognized and recruited heme-bound ALAS to CLPXP. Degradation initiation required a carboxyl-terminal element of ALAS, truncations of which cause an erythropoietic protoporphyria. Our findings establish a mechanism for conditional degradation by CLPXP that underlies erythropoietic protoporphyrias linked to CLPX and ALAS.

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