NUMB dysfunction defines a novel mechanism underlying hyperuricemia and gout
Defective renal excretion and increased production of uric acid engender hyperuricemia that predisposes to gout. However, molecular mechanisms underlying defective uric acid excretion remain largely unknown. Here, we report a rare genetic variant of gout-unprecedented NUMB gene within a hereditary h...
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Veröffentlicht in: | CELL DISCOVERY 2024-10, Vol.10 (1), p.106-16, Article 106 |
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Sprache: | eng |
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Zusammenfassung: | Defective renal excretion and increased production of uric acid engender hyperuricemia that predisposes to gout. However, molecular mechanisms underlying defective uric acid excretion remain largely unknown. Here, we report a rare genetic variant of gout-unprecedented
NUMB
gene within a hereditary human gout family, which was identified by an unbiased genome-wide sequencing approach. This dysfunctional missense variant within the conserved region of the
NUMB
gene (NUMB
R630H
) underwent intracellular redistribution and degradation through an autophagy-dependent mechanism. Mechanistically, we identified the uric acid transporter, ATP Binding Cassette Subfamily G Member 2 (ABCG2), as a novel NUMB-binding protein through its intracellular YxNxxF motif. In polarized renal tubular epithelial cells (RTECs), NUMB promoted ABCG2 trafficking towards the apical plasma membrane. Genetic loss-of-function of NUMB resulted in redistribution of ABCG2 in the basolateral domain and ultimately defective excretion of uric acid. To recapitulate the clinical situation in human gout patients, we generated a NUMB
R630H
knock-in mouse strain, which showed marked increases of serum urate and decreased uric acid excretion. The NUMB
R630H
knock-in mice exhibited clinically relevant hyperuricemia. In summary, we have uncovered a novel NUMB-mediated mechanism of uric acid excretion and a functional missense variant of
NUMB
in humans, which causes hyperuricemia and gout. |
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ISSN: | 2056-5968 2056-5968 |
DOI: | 10.1038/s41421-024-00708-6 |