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A challenge for microbial pathogens is to assure that their translocated effector proteins target only the correct host cell compartment during infection. The Legionella pneumophila effector vacuolar protein sorting inhibitor protein D (VipD) localizes to early endosomal membranes and alters their lipid and protein composition, thereby protecting the pathogen from endosomal fusion. This process requires the phospholipase A1 (PLA1) activity of VipD that is triggered specifically on VipD binding to the host cell GTPase Rab5, a key regulator of endosomes. Here, we present the crystal structure of VipD in complex with constitutively active Rab5 and reveal the molecular mechanism underlying PLA1 activation. An active site-obstructing loop that originates from the C-terminal domain of VipD is repositioned on Rab5 binding, thereby exposing the catalytic pocket within the N-terminal PLA1 domain. Substitution of amino acid residues located within the VipD-Rab5 interface prevented Rab5 binding and PLA1 activation and caused a failure of VipD mutant proteins to target to Rab5-enriched endosomal structures within cells. Experimental and computational analyses confirmed an extended VipD-binding interface on Rab5, explaining why this L. pneumophila effector can compete with cellular ligands for Rab5 binding. Together, our data explain how the catalytic activity of a microbial effector can be precisely linked to its subcellular localization.
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http://dx.doi.org/10.1073/pnas.1405391111 | DOI Listing |
J Biol Chem
September 2025
Department of Oral Disease Research, National Center for Geriatrics and Gerontology, 7-430 Moriokacho, Obu, Aichi, 474-8511, Japan; Department of dental hygiene, Ogaki women's college, 109-1 Nishinokawa-cho, Ogaki-city, Gifu, 503-8554, Japan. Electronic address:
Phagocytosis is mediated mainly by immune cells, such as macrophages, monocytes and neutrophils, that clear large pathogens including bacteria. The small GTP-binding protein Rab5 is crucial for both clathrin-dependent endocytosis and phagocytosis, but the role and mechanism of Rab5 activation during phagocytosis are poorly understood. Here we report that nitric oxide (NO), a novel regulator of Rab5, regulates phagocytosis through S-nitrosylation of Rab5.
View Article and Find Full Text PDFFront Cell Infect Microbiol
September 2025
Multiuser Laboratory of Cell Biology and Ultrastructure, Evandro Chagas Institute, Belém, Pará, Brazil.
Background: The protozoan , in addition to infecting phagocytic cells such as macrophages, can also invade non-professional phagocytic cells like fibroblasts, a process previously described in 2D models. In a bidimensional environment, its interaction with the extracellular matrix and manipulation of endocytic processes reveal a complex ability to alter cellular entry mechanisms. However, this process in fibroblasts, especially in three-dimensional (3D) models, remains poorly understood.
View Article and Find Full Text PDFbioRxiv
August 2025
Department of Biochemistry and Molecular Biology, University of Nebraska Medical Center, Omaha, NE.
Altered lipid metabolism and lipid droplet (LD) dynamics are hallmark features of hepatocellular carcinoma (HCC) subtypes, but the molecular mechanisms governing LD trafficking and catabolism in HCC cells remain unclear. The small GTPase Rab5, a key regulator of early endosomal dynamics, has been observed to localize to the surface of LDs, suggesting it may play a role in LD turnover. However, the regulation of Rab5-LD interactions and its functional consequences in HCC cell metabolism and proliferation have not been elucidated.
View Article and Find Full Text PDFBiomedicines
August 2025
Medical Section, Romanian Academy, 010071 Bucharest, Romania.
Neurodegeneration is increasingly recognized not as a linear trajectory of protein accumulation, but as a multidimensional collapse of biological organization-spanning intracellular signaling, transcriptional identity, proteostatic integrity, organelle communication, and network-level computation. This review intends to synthesize emerging frameworks that reposition neurodegenerative diseases (ND) as progressive breakdowns of interpretive cellular logic, rather than mere terminal consequences of protein aggregation or synaptic attrition. The discussion aims to provide a detailed mapping of how critical signaling pathways-including PI3K-AKT-mTOR, MAPK, Wnt/β-catenin, and integrated stress response cascades-undergo spatial and temporal disintegration.
View Article and Find Full Text PDFJ Mol Med (Berl)
September 2025
Department of Biochemistry and Molecular Biology, School of Basic Medicine, Hebei Medical University, Shijiazhuang, Hebei Province, China, 050017.
The internalization of vascular endothelial growth factor receptor-2 (VEGFR-2) occurs in response to VEGF treatment, and it is eventually transported to the plasma membrane by several endosomes such as Rab5 and Rab11, which are responsible for transporting vesicles from the cytoplasm to plasma membrane. Therefore, the homeostasis of VEGFR-2 internalization and recycling is critical for maintaining the normality of the VEGF signaling pathway and regulates angiogenesis. Previous studies have shown that discoidin, CUB and LCCL domain containing 2 (DCBLD2) can promote the proliferation and migration of vascular endothelial cells (ECs) by promoting the VEGF signaling pathway, but the potential role of DCBLD2 on VEGFR-2 endocytosis remains unclear.
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