This work investigates the specific contributions of the GrxA, GrxB, and Trx domains of human glutaredoxin-3 (GLRX3) in [4Fe-4S] cluster assembly on NUBP1. The findings reveal that cooperative action between GrxA and GrxB is required for functional dimerization of GLRX3 and efficient cluster transfer to NUBP1, whereas the N-terminal Trx domain is dispensable under in vitro conditions.

Human glutaredoxin 3: multiple domains for a unique function / Rosanna Cuccaro, Martina Masini, MALANHO DA SILVA JOSE PEDRO, Francesca Camponeschi, Lucia Banci. - In: JOURNAL OF INORGANIC BIOCHEMISTRY. - ISSN 0162-0134. - ELETTRONICO. - (2025), pp. 0-0.

Human glutaredoxin 3: multiple domains for a unique function

Rosanna Cuccaro;Martina Masini;MALANHO DA SILVA JOSE PEDRO;Francesca Camponeschi
;
Lucia Banci
2025

Abstract

This work investigates the specific contributions of the GrxA, GrxB, and Trx domains of human glutaredoxin-3 (GLRX3) in [4Fe-4S] cluster assembly on NUBP1. The findings reveal that cooperative action between GrxA and GrxB is required for functional dimerization of GLRX3 and efficient cluster transfer to NUBP1, whereas the N-terminal Trx domain is dispensable under in vitro conditions.
2025
0
0
Rosanna Cuccaro; Martina Masini; MALANHO DA SILVA JOSE PEDRO; Francesca Camponeschi; Lucia Banci
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1488412
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