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Hydroxychloroquine (HCQ), a drug used to treat lupus and malaria, was proposed as a treatment for SARS-coronavirus-2 (SARS-CoV-2) infection, albeit with controversy. In vitro, HCQ effectively inhibits viral entry, but its use in the clinic has been hampered by conflicting results. A better understanding of HCQ's mechanism of actions in vitro is needed. Recently, anesthetics were shown to disrupt ordered clusters of monosialotetrahexosylganglioside1 (GM1) lipid. These same lipid clusters recruit the SARS-CoV-2 surface receptor angiotensin converting enzyme 2 (ACE2) to endocytic lipids, away from phosphatidylinositol 4,5 bisphosphate (PIP) clusters. Here we employed super-resolution imaging of cultured mammalian cells (VeroE6, A549, H1793, and HEK293T) to show HCQ directly perturbs clustering of ACE2 receptor with both endocytic lipids and PIP clusters. In elevated (high) cholesterol, HCQ moves ACE2 nanoscopic distances away from endocytic lipids. In cells with resting (low) cholesterol, ACE2 primarily associates with PIP clusters, and HCQ moves ACE2 away from PIP clusters-erythromycin has a similar effect. We conclude HCQ inhibits viral entry through two distinct mechanisms in high and low tissue cholesterol and does so prior to inhibiting cathepsin-L. HCQ clinical trials and animal studies will need to account for tissue cholesterol levels when evaluating dosing and efficacy.
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http://dx.doi.org/10.1038/s42003-022-03841-8 | DOI Listing |
J Cell Biol
November 2025
Life Sciences Institute, University of Michigan, Ann Arbor, MI, USA.
Two major protein recycling pathways have emerged as key regulators of enduring forms of synaptic plasticity, such as long-term potentiation (LTP), yet how these pathways are recruited during plasticity is unknown. Phosphatidylinositol-3-phosphate (PI(3)P) is a key regulator of endosomal trafficking and alterations in this lipid have been linked to neurodegeneration. Here, using primary hippocampal neurons, we demonstrate dynamic PI(3)P synthesis during chemical induction of LTP (cLTP), which drives coordinate recruitment of the SNX17-Retriever and SNX27-Retromer pathways to endosomes and synaptic sites.
View Article and Find Full Text PDFAdv Healthc Mater
September 2025
Songshan Lake Materials Laboratory, Dongguan, Guangdong, 523808, China.
The cryopreservation of human red blood cells (RBCs) is essential for maintaining a stable blood supply, but current glycerol-based methods are hindered by complex and time-consuming post-thaw processing. While trehalose is a promising biocompatible cryoprotectant, its efficient intracellular delivery into non-endocytic RBCs remains a major hurdle. Here, a lyophilized, ionizable lipid nanoparticle (LNP) platform is reported that overcomes this challenge via an acidic pH-triggered membrane fusion mechanism.
View Article and Find Full Text PDFNat Commun
August 2025
Department of Biomedical Engineering, The University of Texas at Austin, Austin, TX, USA.
Clathrin-mediated endocytosis internalizes proteins and lipids from the cell surface. A flexible condensate of initiator proteins catalyzes assembly of clathrin-coated vesicles in diverse organisms. Here we reveal that an endocytic adaptor protein, Epsin1, conditionally stabilizes this network, creating a cargo-dependent endocytic checkpoint.
View Article and Find Full Text PDFPharmacol Res
August 2025
Key Laboratory of Animal Genetics & Breeding and Molecular Design of Jiangsu province, College of Animal Science and Technology, Yangzhou University, Yangzhou, Jiangsu 225009, China. Electronic address:
CD36 is a multifunctional lipid transporter that facilitates long-chain fatty acid uptake and orchestrates metabolic signaling in energy-demanding tissues. Recent studies have uncovered site-specific palmitoylation as a crucial post-translational modification that governs CD36 subcellular trafficking, stabilizing its localization within lipid rafts and regulating its endocytic recycling between the plasma membrane, endosomes, and lipid droplets. This dynamic palmitoylation-depalmitoylation cycle enables CD36 to spatially and temporally couple lipid transport with signal transduction in response to nutritional and hormonal cues.
View Article and Find Full Text PDFMol Biol Rep
August 2025
Faculty of Medicine, Department of Histology, Universitas Indonesia, St. Salemba Raya No.6, Jakarta, 10430, Indonesia.
Exosomes, nanosized extracellular vesicles ranging from 30 to 150 nm, are secreted by all cell types through the endocytic pathway and have emerged as promising candidates for both biomarkers and therapeutic agents due to their capability to transport bioactive molecules such as proteins, lipids, and nucleic acids between cells. This intercellular communication facilitates numerous biological processes, including cellular signaling, immune modulation, and tissue regeneration. Despite their therapeutic potential, a comprehensive understanding of the diverse functions and clinical applications of exosomes remains limited, representing a significant gap in the current biomedical literature.
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