1.Endosomal catabolism of phosphatidylinositol 4,5-bisphosphate is fundamental in building resilience against pathogens.
Chao YANG ; Longfeng YAO ; Dan CHEN ; Changling CHEN ; Wenbo LI ; Hua TONG ; Zihang CHENG ; Yanling YAN ; Long LIN ; Jing ZHANG ; Anbing SHI
Protein & Cell 2025;16(3):161-187
Endosomes are characterized by the presence of various phosphoinositides that are essential for defining the membrane properties. However, the interplay between endosomal phosphoinositides metabolism and innate immunity is yet to be fully understood. Here, our findings highlight the evolutionary continuity of RAB-10/Rab10's involvement in regulating innate immunity. Upon infection of Caenorhabditis elegans with Pseudomonas aeruginosa, an increase in RAB-10 activity was observed in the intestine. Conversely, when RAB-10 was absent, the intestinal diacylglycerols (DAGs) decreased, and the animal's response to the pathogen was impaired. Further research revealed that UNC-16/JIP3 acts as an RAB-10 effector, facilitating the recruitment of phospholipase EGL-8 to endosomes. This leads to a decrease in endosomal phosphatidylinositol 4,5-bisphosphate (PI(4,5)P2) and an elevation of DAGs, as well as the activation of the PMK-1/p38 MAPK innate immune pathway. It is noteworthy that the dimerization of UNC-16 is a prerequisite for its interaction with RAB-10(GTP) and the recruitment of EGL-8. Moreover, we ascertained that the rise in RAB-10 activity, due to infection, was attributed to the augmented expression of LET-413/Erbin, and the nuclear receptor NHR-25/NR5A1/2 was determined to be indispensable for this increase. Hence, this study illuminates the significance of endosomal PI(4,5)P2 catabolism in boosting innate immunity and outlines an NHR-25-mediated mechanism for pathogen detection in intestinal epithelia.
Animals
;
Caenorhabditis elegans/genetics*
;
Endosomes/immunology*
;
Caenorhabditis elegans Proteins/immunology*
;
Phosphatidylinositol 4,5-Diphosphate/immunology*
;
Immunity, Innate
;
Pseudomonas aeruginosa/immunology*
;
rab GTP-Binding Proteins/genetics*
;
Diglycerides/metabolism*
2.Synaptic Vesicle Glycoprotein 2A Slows down Amyloidogenic Processing of Amyloid Precursor Protein via Regulating Its Intracellular Trafficking.
Qian ZHANG ; Xiao Ling WANG ; Yu Li HOU ; Jing Jing ZHANG ; Cong Cong LIU ; Xiao Min ZHANG ; Ya Qi WANG ; Yu Jian FAN ; Jun Ting LIU ; Jing LIU ; Qiao SONG ; Pei Chang WANG
Biomedical and Environmental Sciences 2025;38(5):607-624
OBJECTIVE:
To reveal the effects and potential mechanisms by which synaptic vesicle glycoprotein 2A (SV2A) influences the distribution of amyloid precursor protein (APP) in the trans-Golgi network (TGN), endolysosomal system, and cell membranes and to reveal the effects of SV2A on APP amyloid degradation.
METHODS:
Colocalization analysis of APP with specific tagged proteins in the TGN, ensolysosomal system, and cell membrane was performed to explore the effects of SV2A on the intracellular transport of APP. APP, β-site amyloid precursor protein cleaving enzyme 1 (BACE1) expressions, and APP cleavage products levels were investigated to observe the effects of SV2A on APP amyloidogenic processing.
RESULTS:
APP localization was reduced in the TGN, early endosomes, late endosomes, and lysosomes, whereas it was increased in the recycling endosomes and cell membrane of SV2A-overexpressed neurons. Moreover, Arl5b (ADP-ribosylation factor 5b), a protein responsible for transporting APP from the TGN to early endosomes, was upregulated by SV2A. SV2A overexpression also decreased APP transport from the cell membrane to early endosomes by downregulating APP endocytosis. In addition, products of APP amyloid degradation, including sAPPβ, Aβ 1-42, and Aβ 1-40, were decreased in SV2A-overexpressed cells.
CONCLUSION
These results demonstrated that SV2A promotes APP transport from the TGN to early endosomes by upregulating Arl5b and promoting APP transport from early endosomes to recycling endosomes-cell membrane pathway, which slows APP amyloid degradation.
Amyloid beta-Protein Precursor/genetics*
;
Membrane Glycoproteins/genetics*
;
Animals
;
Protein Transport
;
Nerve Tissue Proteins/genetics*
;
Humans
;
Mice
;
Endosomes/metabolism*
;
trans-Golgi Network/metabolism*
3.Virus hijacking ESCRT system to promote self-replication: a review.
Jun DAI ; Xusheng QIU ; Chan DING
Chinese Journal of Biotechnology 2023;39(10):3948-3965
Endosomal sorting complex required for transport (ESCRT) system drives various cellular processes, including endosome sorting, organelle biogenesis, vesicle transport, maintenance of plasma membrane integrity, membrane fission during cytokinesis, nuclear membrane reformation after mitosis, closure of autophagic vacuoles, and enveloped virus budding. Increasing evidence suggests that the ESCRT system can be hijacked by different family viruses for their proliferation. At different stages of the virus life cycle, viruses can interfere with or exploit ESCRT-mediated physiological processes in various ways to maximize their chance of infecting the host. In addition, many retroviral and RNA viral proteins possess "late domain" motifs, which can recruit host ESCRT subunit proteins to assist in virus endocytosis, transport, replicate, budding and efflux. Therefore, the "late domain" motifs of viruses and ESCRT subunit proteins could serve as promising drug targets in antiviral therapy. This review focuses on the composition and functions of the ESCRT system, the effects of ESCRT subunits and virus "late domain" motifs on viral replication, and the antiviral effects mediated by the ESCRT system, aiming to provide a reference for the development and utilization of antiviral drugs.
Endosomal Sorting Complexes Required for Transport/metabolism*
;
Viruses/metabolism*
;
Protein Transport
;
Virus Replication
;
Endosomes/metabolism*
;
Virus Release
4.Cryo-EM structures of the mammalian endo-lysosomal TRPML1 channel elucidate the combined regulation mechanism.
Sensen ZHANG ; Ningning LI ; Wenwen ZENG ; Ning GAO ; Maojun YANG
Protein & Cell 2017;8(11):834-847
TRPML1 channel is a non-selective group-2 transient receptor potential (TRP) channel with Ca permeability. Located mainly in late endosome and lysosome of all mammalian cell types, TRPML1 is indispensable in the processes of endocytosis, membrane trafficking, and lysosome biogenesis. Mutations of TRPML1 cause a severe lysosomal storage disorder called mucolipidosis type IV (MLIV). In the present study, we determined the cryo-electron microscopy (cryo-EM) structures of Mus musculus TRPML1 (mTRPML1) in lipid nanodiscs and Amphipols. Two distinct states of mTRPML1 in Amphipols are added to the closed state, on which could represent two different confirmations upon activation and regulation. The polycystin-mucolipin domain (PMD) may sense the luminal/extracellular stimuli and undergo a "move upward" motion during endocytosis, thus triggering the overall conformational change in TRPML1. Based on the structural comparisons, we propose TRPML1 is regulated by pH, Ca, and phosphoinositides in a combined manner so as to accommodate the dynamic endocytosis process.
Animals
;
Calcium
;
metabolism
;
Cryoelectron Microscopy
;
Endocytosis
;
Endosomes
;
metabolism
;
Gene Expression
;
HEK293 Cells
;
Humans
;
Hydrogen-Ion Concentration
;
Lysosomes
;
metabolism
;
Mice
;
Models, Biological
;
Mucolipidoses
;
genetics
;
metabolism
;
pathology
;
Nanostructures
;
chemistry
;
ultrastructure
;
Phosphatidylinositols
;
metabolism
;
Transgenes
;
Transient Receptor Potential Channels
;
chemistry
;
genetics
;
metabolism
5.The strategies of endosomal escape for intracellular gene delivery.
Wen-Xi WANG ; Kai DAI ; Lu HONG ; Ting CAI ; Lan TANG
Acta Pharmaceutica Sinica 2014;49(8):1111-1116
The intracellular trafficking and subcellular distribution of exogenous gene is very important for gene delivery. A successful gene vehicle should overcome various barriers including endosomal membrane barriers to delivery gene to the target organelle. Traditional nonviral vehicle is unable to avoid endosomal pathway efficiently, so the efficiency of gene delivery is low and the application of gene drugs is limited. In order to achieve efficient nonviral gene delivery, a lot of researches based on endosomal escape have been carried out and some agents with the function of endsomal escape have been found. These agents facilitate the endsomal escape via various mechanisms, such as fusion into the lipid bilayer of endosomes, pore formation in the endosomal membrane, proton sponge effect and photochemical methods to rupture the endosomal membrane. In this review, various reported strategies for endsomal escape are described according to the escape mechanisms, and their applications in intracellular gene delivery are also discussed.
Cell Membrane
;
metabolism
;
Endosomes
;
metabolism
;
Gene Transfer Techniques
;
Genetic Therapy
;
Genetic Vectors
;
Humans
6.ATP13A2/PARK9 Deficiency Neither Cause Lysosomal Impairment Nor Alter alpha-Synuclein Metabolism in SH-SY5Y Cells.
Eun Jin BAE ; Cheolsoon LEE ; He Jin LEE ; Seokjoong KIM ; Seung Jae LEE
Experimental Neurobiology 2014;23(4):365-371
Parkinson's disease is a multifactorial disorder with several genes linked to the familial types of the disease. ATP13A2 is one of those genes and encode for a transmembrane protein localized in lysosomes and late endosomes. Previous studies suggested the roles of this protein in lysosomal functions and cellular ion homeostasis. Here, we set out to investigate the role of ATP13A2 in lysosomal function and in metabolism of alpha-synuclein, another PD-linked protein whose accumulation is implicated in the pathogenesis. We generated non-sense mutations in both copies of ATP13A2 gene in SH-SY5Y human neuroblastoma cells. We examined lysosomal function of ATP13A2-/- cells by measuring the accumulation of lysosomal substrate proteins, such as p62 and polyubiquitinated proteins, induction of acidic compartments, and degradation of ectopically introduced dextran. None of these measures were altered by ATP13A2 deficiency. The steady-state levels of alpha-synuclein in cells or secretion of this protein were unaltered either in ATP13A2-/- compared to the normal cells. Therefore, the proposed roles of ATP13A2 in lysosomal functions may not be generalized and may depend on the cellular context. The ATP13A2-/- cells generated in the current study may provide a useful control for studies on the roles of PD genes in lysosomal functions.
alpha-Synuclein*
;
Dextrans
;
Endosomes
;
Homeostasis
;
Humans
;
Lysosomes
;
Metabolism*
;
Neuroblastoma
;
Parkinson Disease
;
Polyubiquitin
7.The hydrophobic amino acids involved in the interdomain association of phospholipase D1 regulate the shuttling of phospholipase D1 from vesicular organelles into the nucleus.
Experimental & Molecular Medicine 2012;44(10):571-577
Phospholipase D (PLD) catalyzes the hydrolysis of phosphatidylcholine to generate the lipid second messenger, phosphatidic acid. PLD is localized in most cellular organelles, where it is likely to play different roles in signal transduction. PLD1 is primarily localized in vesicular structures such as endosomes, lysosomes and autophagosomes. However, the factors defining its localization are less clear. In this study, we found that four hydrophobic residues present in the N-terminal HKD catalytic motif of PLD1, which is involved in intramolecular association, are responsible for vesicular localization. Site-directed mutagenesis of the residues dramatically disrupted vesicular localization of PLD1. Interestingly, the hydrophobic residues of PLD1 are also involved in the interruption of its nuclear localization. Mutation of the residues increased the association of PLD1 with importin-beta, which is known to mediate nuclear importation, and induced the localization of PLD1 from vesicles into the nucleus. Taken together, these data suggest that the hydrophobic amino acids involved in the interdomain association of PLD1 are required for vesicular localization and disturbance of its nuclear localization.
Amino Acid Motifs
;
Amino Acid Sequence
;
Amino Acids/chemistry
;
Cell Nucleus/*enzymology
;
Endosomes/enzymology
;
HEK293 Cells
;
Humans
;
Hydrophobic and Hydrophilic Interactions
;
Lysosomes/enzymology
;
Phagosomes/enzymology
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Phospholipase D/chemistry/*metabolism
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Protein Interaction Domains and Motifs
;
Protein Transport
;
Transport Vesicles/*enzymology
8.Hrs inhibits citron kinase-mediated HIV-1 budding via its FYVE domain.
Jiwei DING ; Lishan SU ; Guangxia GAO
Protein & Cell 2011;2(6):470-476
Hepatocyte growth factor-regulated tyrosine kinase substrate (Hrs) is a key component of the endosomal sorting complexes required for transport and has been demonstrated to play a regulatory role in endocytosis/exocytosis and the accumulation of internal vesicles in multivesicular bodies. Citron kinase is a Ser/The kinase that we previously reported to enhance human immunodeficiency virus type 1 (HIV-1) virion production. However, the relationship between Hrs and citron kinase in HIV-1 production remains elusive. Here, we report that Hrs interacts with citron kinase via its FYVE domain. Overexpression of Hrs or the FYVE domain resulted in a significant decrease in HIV-1 virion production. Depletion of Hrs by RNA interference in HEK293T cells increased HIV-1 virion production and enhanced the activity of citron kinase. These data suggest that Hrs inhibits HIV-1 production by inhibiting citron kinase-mediated exocytosis.
Down-Regulation
;
Endosomal Sorting Complexes Required for Transport
;
genetics
;
metabolism
;
Endosomes
;
metabolism
;
Exocytosis
;
Gene Expression
;
Gene Silencing
;
drug effects
;
HEK293 Cells
;
HIV Infections
;
genetics
;
metabolism
;
virology
;
HIV-1
;
drug effects
;
genetics
;
growth & development
;
Humans
;
Immunoprecipitation
;
Intracellular Signaling Peptides and Proteins
;
genetics
;
metabolism
;
Microscopy, Fluorescence
;
Phosphoproteins
;
genetics
;
metabolism
;
Plasmids
;
Protein Binding
;
drug effects
;
genetics
;
Protein Interaction Domains and Motifs
;
Protein Structure, Tertiary
;
Protein Transport
;
Protein-Serine-Threonine Kinases
;
genetics
;
metabolism
;
RNA, Small Interfering
;
pharmacology
;
Transfection
;
Virion
;
drug effects
;
genetics
;
growth & development
;
Virus Release
;
drug effects
;
Virus Replication
;
drug effects
9.Tumour-derived exosomes and their roles in cancer.
Journal of Central South University(Medical Sciences) 2010;35(12):1288-1292
Exosomes are nanometer sized membrane vesicles, released in the extracellular milieu following the fusion of the external membrane of multivesicular body (MVB) with plasma membrane. They perform a certain function in immune regulation. Exosomes have been shown to be released by cells of hematopoietic and non-hematopoietic origin. Tumour-derived exosomes (TEX) exist in the supernatant of tumour cells, plasma and malignant effusions of tumour patients. They contain native candidate tumour associated antigen and are capable of transferring antigens to T lymphocytes, therefore efficiently promoting cytotoxic T lymphocyte (CTL) activation and producing antitumor immunity. However, recent evidence shows that tumor exosomes may induce immunologic tolerance and even activate immunosuppression which makes tumour escape from the immune surveillance of the host immune system. In addition, tumor exosomes may mediate a growth-promoting effect on tumor cells. These discrepancies are almost certainly due to differences in the phenotype of the exosomes.
Antigen-Presenting Cells
;
immunology
;
Antigens, Neoplasm
;
immunology
;
Cytoplasmic Vesicles
;
immunology
;
Endosomes
;
immunology
;
metabolism
;
Exosomes
;
immunology
;
Humans
;
Neoplasms
;
immunology
;
T-Lymphocytes, Cytotoxic
;
immunology
;
Tumor Escape
10.The mechanism of HBV infection of human trophoblast cell.
An-hui WANG ; Ai-qin WANG ; De-zhong XU ; Ke MEN ; Yong-ping YAN ; Jing-xia ZHANG ; Yuan LIU ; Xiao-feng HUANG ; Chun-mei WANG
Chinese Journal of Experimental and Clinical Virology 2008;22(1):51-53
OBJECTIVETo observe the changes of human trophoblast cells after infected with hepatitis B virus.
METHODSHBV positive serum was used to infect human trophoblast cells in vitro. HBsAg in cell culture medium were detected by ELISA method and HBV DNA in cell culture medium and cells were detected by PCR method. HBV fluorescence polymerase chain reaction diagnose kit were used to detect the HBV DNA concentration. Ultra structure of trophoblast cells were observed with transmission electron microscopy (TEM).
RESULTSHBsAg could be detected in infection group by ELISA. Infection group cell culture medium and infection group cells were HBV DNA positive. HBV DNA concentrations in HBV infection cell culture medium in 0, 12, 36, 60, 84 h after extensively PBS washed were < 10(3), 3 x 10(4), 6 x 10(5), 5 x 10(5), 3 x 10(5) copies/mL. HBV infected trophoblast cells were found many forms of endosomes, some of which contents virus like particle.
CONCLUSIONHBV might take advantage of clathrin-mediated endocytosis to enter trophoblast cell, which might lead to cell infection or across the cell bar by transcytosis.
Animals ; Culture Media, Conditioned ; metabolism ; DNA, Viral ; analysis ; Endosomes ; virology ; Enzyme-Linked Immunosorbent Assay ; Hepatitis B Surface Antigens ; analysis ; Hepatitis B virus ; genetics ; isolation & purification ; physiology ; Humans ; Microscopy, Electron, Transmission ; Polymerase Chain Reaction ; Time Factors ; Trophoblasts ; ultrastructure ; virology

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