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Human mitochondrial carriers of the SLC25 family function as monomers exchanging substrates with a ping-pong kinetic mechanism

EMBO J . 2024-08; 
Camila Cimadamore-Werthein , Martin S King , Denis Lacabanne , Eva Pyrihová , Stephany Jaiquel Baron , Edmund Rs Kunji
Products/Services Used Details Operation
Gene Synthesis UniProt accession code: Q9UBX3) and the human aspartate/glutamate carrier 2 (AGC2, SLC25A13, UniProt accession code: Q9UJS0) were codon-optimized with an N-terminal eight histidine tag and either Xa (OGC, CIC and DIC) or TEV (AGC2) protease cleavage sites to aid purification (OGC, Δ2-13; CIC, Δ2-12; DIC, GKP added (positions 2–4)) (synthesized by GenScript). Get A Quote

摘要

Members of the SLC25 mitochondrial carrier family link cytosolic and mitochondrial metabolism and support cellular maintenance and growth by transporting compounds across the mitochondrial inner membrane. Their monomeric or dimeric state and kinetic mechanism have been a matter of long-standing debate. It is believed by some that they exist as homodimers and transport substrates with a sequential kinetic mechanism, forming a ternary complex where both exchanged substrates are bound simultaneously. Some studies, in contrast, have provided evidence indicating that the mitochondrial ADP/ATP carrier (SLC25A4) functions as a monomer, has a single substrate binding site, and operates with a ping-pong kinetic mechanis... More

關鍵詞

Bioenergetics; Kinetic Analysis; Mitochondria; SLC25 Mitochondrial Carrier Family; Transport.
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