4.4 Article

LYST Controls the Biogenesis of the Endosomal Compartment Required for Secretory Lysosome Function

Journal

TRAFFIC
Volume 16, Issue 2, Pages 191-203

Publisher

WILEY
DOI: 10.1111/tra.12244

Keywords

Chediak-Higashi syndrome; cytotoxic granules; cytotoxic T lymphocytes; exocytosis; granule biogenesis; LYST

Categories

Funding

  1. INSERM
  2. French National Research Agency under the ANR-Genopath program [ANR 12-BSV1-0020-01]
  3. ARC Foundation [PJA 20131200047, R2011]
  4. European Research Council PIDImmun [249816]
  5. Ministere de l'Education Nationale de la Recherche et de la Technologie
  6. Association de Recherche contre le Cancer charity
  7. Imagine Foundation
  8. French government's 'Investissement d'Avenir' Programme [ANR-10-IAHU-01]
  9. French National Research Agency [ANR-10-INSB-04]
  10. European Research Council (ERC) [249816] Funding Source: European Research Council (ERC)
  11. Agence Nationale de la Recherche (ANR) [ANR-12-BSV1-0020] Funding Source: Agence Nationale de la Recherche (ANR)

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Chediak-Higashi syndrome (CHS) is caused by mutations in the gene encoding LYST protein, the function of which remains poorly understood. Prominent features of CHS include defective secretory lysosome exocytosis and the presence of enlarged, lysosome-like organelles in several cell types. In order to get further insight into the role of LYST in the biogenesis and exocytosis of cytotoxic granules, we analyzed cytotoxic T lymphocytes (CTLs) from patients with CHS. Using confocal microscopy and correlative light electron microscopy, we showed that the enlarged organelle in CTLs is a hybrid compartment that contains proteins components from recycling-late endosomes and lysosomes. Enlargement of cytotoxic granules results from the progressive clustering and then fusion of normal-sized endolysosomal organelles. At the immunological synapse (IS) in CHS CTLs, cytotoxic granules have limited motility and appear docked while nevertheless unable to degranulate. By increasing the expression of effectors of lytic granule exocytosis, such as Munc13-4, Rab27a and Slp3, in CHS CTLs, we were able to restore the dynamics and the secretory ability of cytotoxic granules at the IS. Our results indicate that LYST is involved in the trafficking of the effectors involved in exocytosis required for the terminal maturation of perforin-containing vesicles into secretory cytotoxic granules.

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