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ABC transporters couple ATP hydrolysis to the transport of substrates across cellular membranes. This protein superfamily has diverse activities resulting from differences in their cargo and subcellular localization. Our work investigates the role of the ABCG family member WHT-2 in the biogenesis of gut granules, a lysosome-related organelle. In addition to being required for the accumulation of birefringent material within gut granules, WHT-2 is necessary for the localization of gut granule proteins when trafficking pathways to this organelle are partially disrupted. The role of WHT-2 in gut granule protein targeting is likely linked to its function in Rab GTPase localization. We show that WHT-2 promotes the gut granule association of the Rab32 family member GLO-1 and the endolysosomal RAB-7, identifying a novel function for an ABC transporter. WHT-2 localizes to gut granules where it could play a direct role in controlling Rab localization. Loss of CCZ-1 and GLO-3, which likely function as a guanine nucleotide exchange factor (GEF) for GLO-1, lead to similar disruption of GLO-1 localization. We show that CCZ-1, like GLO-3, is localized to gut granules. WHT-2 does not direct the gut granule association of the GLO-1 GEF and our results point to WHT-2 functioning differently than GLO-3 and CCZ-1 Point mutations in WHT-2 that inhibit its transport activity, but not its subcellular localization, lead to the loss of GLO-1 from gut granules, while other WHT-2 activities are not completely disrupted, suggesting that WHT-2 functions in organelle biogenesis through transport-dependent and transport-independent activities.
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http://dx.doi.org/10.1534/genetics.119.302900 | DOI Listing |
G3 (Bethesda)
September 2025
Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125, USA.
The lysosome-related organelles ("gut granules") in the intestinal cells of many nematodes, including Caenorhabditis elegans, play an important role in metabolic and signaling processes, but they have not been fully characterized. We report here a previously undescribed phenomenon in which the autofluorescence of these granules displays a "flash" phenomenon in which fluorescence decreases are preceded by sharp increases in fluorescence intensity that expand into the surrounding area when the granules are stimulated with blue light. Autofluorescent granules are present in the intestinal cells of all six nematode species examined, with differences in morphology and distribution pattern.
View Article and Find Full Text PDFThis study investigates the mechanism by which Xintong Granules improve myocardial ischemia-reperfusion injury(MIRI) through the regulation of gut microbiota and their metabolites, specifically short-chain fatty acids(SCFAs). Rats were randomly divided based on body weight into the sham operation group, model group, low-dose Xintong Granules group(1.43 g·kg~(-1)·d~(-1)), medium-dose Xintong Granules group(2.
View Article and Find Full Text PDFJ Parasit Dis
September 2025
Department of Zoology, Barasat Government College, 10, K.N.C. Road, Barasat, 24 Pgs North, Kolkata, 700124 West Bengal India.
Cockroach gut houses mostly anaerobic microbial communities. Most of these eukaryotes live as endocommensal rather as pathogens. The morphological diversity of the eukaryotic microorganisms present in the intestinal tract of American cockroach, were investigated.
View Article and Find Full Text PDFHereditas
August 2025
Oncology Department, The Affiliated People's Hospital of Fujian University of Traditional Chinese Medicine, Fuzhou, Fujian, 350004, China.
Cancer cachexia, a debilitating syndrome characterized by muscle wasting and systemic inflammation, remains a major unmet clinical need. Qingxie Fuzheng Granules (QFG), a traditional Chinese medicine formulation, have shown promise in cancer therapy, but their role in cachexia management is unclear.Here, we investigated the anti-cachectic effects of QFG in a murine model of colon adenocarcinoma-induced cachexia.
View Article and Find Full Text PDFCell Host Microbe
August 2025
Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, MO 63110, USA. Electronic address:
Cryptosporidium parvum subtypes differ in pathogenicity, but the underlying factors are largely unknown. We show that two genetically similar C. parvum isolates grow equally well in vitro but differ in pathogenicity in immunocompromised mice.
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