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Mycobacterium tuberculosis FasR senses long fatty acyl-CoA through a tunnel and a hydrophobic transmission spine

Nature Communications. 2024-12; 
Julia Lara; Lautaro Diacovich; Felipe Trajtenberg; Nicole Larrieux; Emilio L. Malchiodi; Marisa M. Fern ndez; Gabriela Gago; Hugo Gramajo; Alejandro Buschiazzo
Products/Services Used Details Operation
Recombinant Proteins (FasR LVL , FasR L106F , FasR L98A and FasR F123A ) as recombinant proteins with a hexa-histidine-TEV-tagged site at the N-terminus were synthesised (GenScript). NdeI/HindIII restriction sites were engineered in a pUC57-Am plasmid where genes of interest were introduced. Synthetic plasmids were digested with Get A Quote

摘要

Mycobacterium tuberculosis is a pathogen with a unique cell envelope including very long fatty acids, implicated in bacterial resistance and host immune modulation. FasR is a TetR-like transcriptional activator that plays a central role in sensing mycobacterial long-chain fatty acids and regulating lipid biosynthesis. Here we disclose crystal structures of M. tuberculosis FasR in complex with acyl effector ligands and with DNA, uncovering its molecular sensory and switching mechanisms. A long tunnel traverses the entire effector-binding domain, enabling long fatty acyl effectors to bind. Only when the tunnel is entirely occupied, the protein dimer adopts a rigid configuration with its DNA-binding domains in an ... More

关键词

Structural biology, Bacterial physiology, Transcription