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May 7, 20260 citationsOpen Access

Structural basis of lipid-linked galactan export by the mycobacterial ABC transporter Wzm-Wzt

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AGAlisa GaraevaVFViktória FabianováKSKarin Savková

Key Points

  • This research examines the structural and functional aspects of the Wzm-Wzt transporter in mycobacteria.
  • Cryo-EM imaging of Wzm-Wzt from Mycobacterium abscessus
  • Functional assays on conserved residues
  • Analysis of conformational changes during the transport cycle
  • Identified structural conformations of Wzm-Wzt
  • Cytosolic gate helix crucial for polysaccharide transport
  • First translocation of hydrophobic moiety followed by galactan-polysaccharide

Abstract

Mycobacteria, including Mycobacterium tuberculosis , possess a unique cell envelope containing arabinogalactan, a heteropolysaccharide critical for cell wall integrity and target of several tuberculosis drugs. The cytosolic precursor of arabinogalactan, lipid-linked galactan (LLG), is translocated across the plasma membrane by the essential ABC transporter Wzm-Wzt through a molecular mechanism that is poorly understood. Here, we present a series of cryo-EM structures of Wzm-Wzt from Mycobacterium abscessus , representing different conformations of the transport cycle. Conserved residues lining the proposed LLG translocation pathway were investigated by three orthologous functional assays, revealing that the cytosolic gate helix (GH) plays a key functional role in polysaccharide transport. Our data suggests that the hydrophobic polyprenyl-moiety is translocated first, followed by the galactan-polysaccharide, which requires Wzm-Wzt to open a continuous channel through which the sugar chain is ratcheted at the expense of ATP hydrolysis. Our results provide a rational basis for the development of drugs that inhibit mycobacterial cell wall biosynthesis.

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Cite This Study

Garaeva et al. (2026) studied this question.

synapsesocial.com/papers/69fbefa3164b5133a91a3822https://doi.org/10.5167/uzh-433970
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