2.Inhibitory effect of endophytic fungi from Dysosma versipellis on HIV-1 IN-LEDGF/p75 interaction.
Ya-Qin ZHOU ; Da-Wei ZHANG ; Li-Ying YU ; Ying WEI ; Hong-Zhen TANG ; Shi-Ling YANG ; Xiao-Ming TAN
China Journal of Chinese Materia Medica 2019;44(9):1808-1813
To determine the inhibitory effect of endophytic fungi from Dysosma versipellis on HIV-1 IN-LEDGF/p75 interaction,the protein-protein interaction between human immunodeficiency virus type 1( HIV-1) integrase and lens epithelial growth factor p75 protein( LEDGF/p75) was used as a target. The homogeneous time-resolved fluorescence( HTRF) technique was used in the inhibitory activity assay. The results showed that eight endophytic fungi with anti-IN-LEDGF/p75 interaction activity were screened out from fifty-three strains with different morphological characteristic. Among them,106 strain showed strong inhibitory activity against HIV-1 IN-LEDGF/p75 interaction with IC50 value of 5. 23 mg·L-1,and was identified as a potential novel species of Magnaporthaceae family by the analyses of ITS-rDNA,LSU and RPB2 sequences data. This study demonstrated that potential natural active ingredients against the HIV-1 IN-LEDGF/p75 interaction exist in the endophytic fungi of D. versipellis. These results may provide available candidate strain resources for the research and development of new anti-acquired immunodeficiency syndrome drugs.
Berberidaceae
;
microbiology
;
Endophytes
;
Fungi
;
chemistry
;
HIV Integrase
;
metabolism
;
HIV-1
;
drug effects
;
Humans
;
Intercellular Signaling Peptides and Proteins
;
metabolism
;
Protein Binding
3.Inhibition of retroviral Gag assembly by non-silencing miRNAs promotes autophagic viral degradation.
Na QU ; Zhao MA ; Mengrao ZHANG ; Muaz N RUSHDI ; Christopher J KRUEGER ; Antony K CHEN
Protein & Cell 2018;9(7):640-651
We recently reported an unconventional mechanism by which miRNAs inhibit HIV-1 viral production. This occurs when miRNAs bind nonspecifically to the viral structural protein Gag, interfering with viral RNA-mediated Gag assembly at the plasma membrane. Consequently, misassembled viral complexes are redirected into the endocytic pathway where they are delivered to lysosomes for degradation. In this study, we demonstrate that autophagy is a critical mediator of the viral degradation pathway and that this pathway is not HIV-1 specific. Misassembled viral complexes were found to colocalize extensively with LC3 and p62 in late endosomes/lysosomes, demonstrating a convergence of autophagy with functional degradative compartments. Knocking down autophagosome formation machineries reduced this convergence, while treatment with autophagy-inducer rapamycin enhanced the convergence. Furthermore, similar autophagy-dependent nonspecific miRNA inhibition of murine leukemia virus (MLV) assembly was shown. Overall, these results reveal autophagy as a crucial regulator of the retroviral degradation pathway in host cells initiated by nonspecific miRNA-Gag interactions. These findings could have significant implications for understanding how cells may regulate retroviral complex assembly by miRNA expression and autophagy, and raise the possibility that similar regulations can occur in other biological contexts.
Autophagy
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Cell Membrane
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metabolism
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Gene Products, gag
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genetics
;
metabolism
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HEK293 Cells
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HIV-1
;
metabolism
;
Humans
;
Lysosomes
;
metabolism
;
MicroRNAs
;
genetics
;
metabolism
;
Virus Assembly
4.Antiviral Activity of Dual-acting Hydrocarbon-stapled Peptides against HIV-1 Predominantly Circulating in China.
Yan WANG ; Francesca CURRELI ; Wei Si XU ; Zhen Peng LI ; De Sheng KONG ; Li REN ; Kun Xue HONG ; Shi Bo JIANG ; Yi Ming SHAO ; Asim K DEBNATH ; Li Ying MA
Biomedical and Environmental Sciences 2017;30(6):398-406
OBJECTIVENew rationally designed i,i+7-hydrocarbon-stapled peptides that target both HIV-1 assembly and entry have been shown to have antiviral activity against HIV-1 subtypes circulating in Europe and North America. Here, we aimed to evaluate the antiviral activity of these peptides against HIV-1 subtypes predominantly circulating in China.
METHODSThe antiviral activity of three i,i+7-hydrocarbon-stapled peptides, NYAD-36, NYAD-67, and NYAD-66, against primary HIV-1 CRF07_BC and CRF01_AE isolates was evaluated in peripheral blood mononuclear cells (PBMCs). The activity against the CRF07_BC and CRF01_AE Env-pseudotyped viruses was analyzed in TZM-bl cells.
RESULTSWe found that all the stapled peptides were effective in inhibiting infection by all the primary HIV-1 isolates tested, with 50% inhibitory concentration toward viral replication (IC50) in the low micromolar range. NYAD-36 and NYAD-67 showed better antiviral activity than NYAD-66 did. We further evaluated the sensitivity of CRF01_AE and CRF07_BC Env-pseudotyped viruses to these stapled peptides in a single-cycle virus infectivity assay. As observed with the primary isolates, the IC50s were in the low micromolar range, and NYAD-66 was less effective than NYAD-36 and NYAD-67.
CONCLUSIONHydrocarbon-stapled peptides appear to have broad antiviral activity against the predominant HIV-1 viruses in China. This finding may provide the impetus to the rational design of peptides for future antiviral therapy.
Amino Acid Sequence ; Anti-HIV Agents ; chemistry ; pharmacology ; China ; epidemiology ; HIV Envelope Protein gp120 ; genetics ; metabolism ; HIV Infections ; epidemiology ; virology ; HIV-1 ; drug effects ; genetics ; Humans ; Peptides, Cyclic ; administration & dosage ; pharmacology ; Phylogeny
5.Baseline Naive CD4+ T-cell Level Predicting Immune Reconstitution in Treated HIV-infected Late Presenters.
Fu-Ping GUO ; Yi-Jia LI ; Zhi-Feng QIU ; Wei LV ; Yang HAN ; Jing XIE ; Yan-Ling LI ; Xiao-Jing SONG ; Shan-Shan DU ; Vikram MEHRAJ ; Tai-Sheng LI ; Jean-Pierre ROUTY
Chinese Medical Journal 2016;129(22):2683-2690
BACKGROUNDAmong HIV-infected patients initiating antiretroviral therapy (ART), early changes in CD4+ T-cell subsets are well described. However, HIV-infected late presenters initiating treatment present with a suboptimal CD4+ T-cell reconstitution and remain at a higher risk for AIDS and non-AIDS events. Therefore, factors associated with CD4+ T-cell reconstitution need to be determined in this population, which will allow designing effective immunotherapeutic strategies.
METHODSThirty-one adult patients with baseline CD4+ T-cell count <350 cells/mm3 exhibiting viral suppression after ART initiation were followed in the HIV/AIDS research center of Peking Union Medical College Hospital in Beijing, China, from October 2002 to September 2013. Changes in T-cell subsets and associated determinants were measured.
RESULTSMedian baseline CD4+ T-cell count was 70 cells/mm3. We found a biphasic reconstitution of T-cell subsets and immune activation: a rapid change during the first 6 months followed by a more gradual change over the subsequent 8 years. Baseline CD4+ T-cell count >200 cells/mm3 in comparison to CD4+ T-cell count ≤200 cells/mm3 was associated with more complete immune Reconstitution (77.8% vs. 27.3% respectively; P = 0.017) and normalized CD4/CD8 ratio. We showed that the baseline percentage of naive CD4+ T-cell was a predictive marker for complete immune reconstitution (area under receiver operating characteristic curve 0.907), and 12.4% as cutoff value had a sensitivity of 84.6% and a specificity of 88.2%.
CONCLUSIONSBaseline naive CD4+ T-cell percentage may serve as a predictive marker for optimal immune reconstitution during long-term therapy. Such study findings suggest that increasing thymic output should represent an avenue to improve patients who are diagnosed late in the course of infection.
Adult ; Antiretroviral Therapy, Highly Active ; methods ; CD4 Lymphocyte Count ; CD4-CD8 Ratio ; CD4-Positive T-Lymphocytes ; metabolism ; Female ; HIV Infections ; drug therapy ; immunology ; metabolism ; HIV-1 ; drug effects ; immunology ; pathogenicity ; Humans ; Male ; Prospective Studies ; T-Lymphocyte Subsets ; immunology
6.Distinctive Drug-resistant Mutation Profiles and Interpretations of HIV-1 Proviral DNA Revealed by Deep Sequencing in Reverse Transcriptase.
Qian Qian YIN ; Zhen Peng LI ; Hai ZHAO ; Dong PAN ; Yan WANG ; Wei Si XU ; Hui XING ; Yi FENG ; Shi Bo JIANG ; Yi Ming SHAO ; Li Ying MA
Biomedical and Environmental Sciences 2016;29(4):239-247
OBJECTIVETo investigate distinctive features in drug-resistant mutations (DRMs) and interpretations for reverse transcriptase inhibitors (RTIs) between proviral DNA and paired viral RNA in HIV-1-infected patients.
METHODSForty-three HIV-1-infected individuals receiving first-line antiretroviral therapy were recruited to participate in a multicenter AIDS Cohort Study in Anhui and Henan Provinces in China in 2004. Drug resistance genotyping was performed by bulk sequencing and deep sequencing on the plasma and whole blood of 77 samples, respectively. Drug-resistance interpretation was compared between viral RNA and paired proviral DNA.
RESULTSCompared with bulk sequencing, deep sequencing could detect more DRMs and samples with DRMs in both viral RNA and proviral DNA. The mutations M184I and M230I were more prevalent in proviral DNA than in viral RNA (Fisher's exact test, P<0.05). Considering 'majority resistant variants', 15 samples (19.48%) showed differences in drug resistance interpretation between viral RNA and proviral DNA, and 5 of these samples with different DRMs between proviral DNA and paired viral RNA showed a higher level of drug resistance to the first-line drugs. Considering 'minority resistant variants', 22 samples (28.57%) were associated with a higher level of drug resistance to the tested RTIs for proviral DNA when compared with paired viral RNA.
CONCLUSIONCompared with viral RNA, the distinctive information of DRMs and drug resistance interpretations for proviral DNA could be obtained by deep sequencing, which could provide more detailed and precise information for drug resistance monitoring and the rational design of optimal antiretroviral therapy regimens.
Adult ; Antiviral Agents ; pharmacology ; China ; DNA, Viral ; genetics ; metabolism ; Drug Resistance, Viral ; genetics ; Female ; HIV Infections ; drug therapy ; HIV-1 ; drug effects ; genetics ; metabolism ; High-Throughput Nucleotide Sequencing ; Humans ; Male ; Middle Aged ; Mutation ; Proviruses ; genetics ; metabolism ; RNA, Viral ; genetics ; metabolism ; RNA-Directed DNA Polymerase
7.Influence of Opiate Abuse on Expression of Toll-like Receptor 9 in Peripheral Blood Mononuclear Cells of HIV-1-Infected Individuals.
Peijiang PAN ; Fumei WEI ; Junjun JIANG ; Bingyu LIANG ; Jiegang HUANG ; Yanyan LIAO ; Jinming SU ; Yu LI ; Xiaoyi YANG ; Hui CHEN ; Li YE ; Hao LIANG
Chinese Journal of Virology 2015;31(2):132-138
The aim of this study was to investigate the influence of opiate abuse on the expression of Toll-like receptor 9 (TLR9) in the peripheral blood mononuclear cells (PBMCs) of HIV-1-infected patients and to elucidate possible mechanisms involved in the enhancement of HIV-1 replication by opiate abuse. A total of 200 participants were enrolled in the study by random selection from methadone treatment centers and voluntary HIV counseling and testing centers in the cities of Nanning, Liuzhou, and Qinzhou. These participants included 50 HIV-positive opiate abusers (Opiates HIV(+) group), 50 HIV-negative opiate abusers (Opiates HIV(-) group), 50 HIV-positive subjects who were not opiate abusers (Non-opiates HIV (+) group), and 50 HIV-negative subjects who were not opiate abusers (Control group). PBMCs were isolated from the peripheral blood samples from the subjects and the expression levels of TLR9 mRNA and protein were determined by q-PCR and western blot respectively. There was no significant difference among the four groups in age, gender, nationality, domicile, marital status, educational background or duration of drug abuse (P > 0.05). The median viral loads of the Opiates HIV(+) were significantly higher than those of the Non-Opiates HIV(+) groups (4.450 x 10(3) and 3.977 x 10(3) copies/mL respectively, P < 0.05). The relative expression levels of TLR9 mRNA in the Opiates HIV(+), Non-Opiates HIV(+), Opiates HIV(-) and Control groups were (2.13 +/- 1.59) x 10(-3), (3.66 +/- 2.22) x 10(-3), (1.96 +/- 1.42) x 10(-3) and (7.66 +/- 4.87) x 10(-3), respectively. The expression of TLR9 mRNA was significantly lower in both HIV-1-infected and -uninfected groups of opiate abusers compared with groups of non-abusers (P < 0.05). There was no significant difference in TLR9 mRNA expression levels between the Opiates HIV(+) group and the Opiates HIV(-) group (P > 0.05). However, in the non-opiate groups, the expression levels of TLR9 mRNA in the HIV(+) group were significantly lower than that of the control group (P< 0.05). Western blot results confirmed that the expression of TLR9 protein was lower in the Opiates HIV(+), Non-Opiates HIV(+), and Opiates HIV(-) groups compared to the control group. These results suggest that opiate abuse can decrease the expression of TLR9 in PBMCs, which may result in the enhancement of HIV-1 infection and replication due to a decline in immune response mediated by the TLR9 pathway.
Adolescent
;
Adult
;
Female
;
HIV Infections
;
genetics
;
metabolism
;
virology
;
HIV-1
;
physiology
;
Humans
;
Leukocytes, Mononuclear
;
metabolism
;
Male
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Middle Aged
;
Opioid-Related Disorders
;
genetics
;
metabolism
;
Toll-Like Receptor 9
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genetics
;
metabolism
;
Young Adult
8.Recent advances in the study of mechanism of APOBEC3G against virus.
Yan-Ping ZHU ; Jian-Dong JIANG ; Zong-Gen PENG
Acta Pharmaceutica Sinica 2014;49(1):30-36
APOBEC3 is a class of cytidine deaminase, which is considered as a new member of the innate immune system, and APOBEC3G belongs to this family. The research about APOBEC3G is a new direction of innate immune defense mechanism against virus. APOBEC3G has the restrictive activity on many viral replications, which deaminates dC to dU in the viral genome and then induces extensive hypermutation. APOBEC3G can also interrupt viral replication at several phases such as reverse transcription, replication, nucleocapsid and so on by non-deamination mechanisms. However, virus can encode viral proteins to counteract the restriction activity of APOBEC3G. Elucidation of the antagonistic interaction between APOBEC3G and the virus will be contributed to development of new antiviral drugs in the future.
APOBEC-3G Deaminase
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Animals
;
Cytidine Deaminase
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genetics
;
metabolism
;
DNA Replication
;
Deamination
;
HIV-1
;
physiology
;
Hepacivirus
;
genetics
;
physiology
;
Hepatitis B virus
;
genetics
;
physiology
;
Humans
;
Paramyxoviridae
;
genetics
;
physiology
;
Retroviridae
;
physiology
;
Virus Replication
;
vif Gene Products, Human Immunodeficiency Virus
;
metabolism
9.Prokaryotic soluble expression, purification and function study of LEDGF/p75 protein.
Da-Wei ZHANG ; Hong-Qiu HE ; Shun-Xing GUO
Acta Pharmaceutica Sinica 2014;49(8):1200-1207
HIV-1 integrase (IN) is a key enzyme for the viral replication. The protein-protein interaction (PPI) between HIV-1 IN and a cellular cofactor lens epithelium-derived growth factor (LEDGF/p75) is a validated target for anti-HIV drug discovery. In order to build the platform for screening inhibitor against PPI between IN and LEDGF/p75, the vector containing the LEDGF/p75 protein cDNA was constructed and expressed in Escherichia coli and the function of the LEDGF/p75 protein was assayed. The LGDGF/p75 encoding gene optimized according to the preference codon usage of E. coli, was synthesized and cloned into the expression vector pGEX-4T-1 to form a recombined plasmid, then transformed into host cell E. coli BL21 (DE3). The recombined clones were identified and confirmed by BamH I/Sal I digestion and sequencing, the successfully recombined plasmid in the host cell was induced by IPTG and the condition of the expression was optimized. The expressed protein was purified by the Ni2+ affinity chromatography column and SDS-PAGE was used to analyze the molecular weight and specificity. In addition, ELISA assay was used to analyze the function of the recombinant protein. The recombinant LGDGF/p75 was soluble, and expressed highly and stably in E. coli. The protein was proved to enhance HIV-1 IN strand transfer activity in vitro by ELISA. It will be helpful to build the platform of screening inhibitors against PPI between IN and LEDGF/p75.
Cloning, Molecular
;
Escherichia coli
;
metabolism
;
HIV Integrase
;
metabolism
;
HIV-1
;
physiology
;
Humans
;
Intercellular Signaling Peptides and Proteins
;
biosynthesis
;
Protein Binding
;
Virus Replication
10.Effect and mechanism of endoplasmic reticulum stress on cisplatin resistance in ovarian carcinoma.
Jing TIAN ; Xiaoming HU ; Quanxin QU
Chinese Journal of Oncology 2014;36(5):324-328
OBJECTIVEThe study intended to investigate the effect and mechanism of endoplasmic reticulum stress on cisplatin resistance in ovarian carcinoma.
METHODSRT-PCR and Western blot were used to test the expression of mTOR and Beclin1 mRNA and protein in ovarian cancer SKOV3 cells after saquinavir induction. MTT assay was used to analyze the influence of saquinavir on cisplatin sensitivity in SKOV3 cells.
RESULTSThe IC50 of SKOV3 cells was (5.490 ± 1.148) µg/ml. After induced by Saquinavair 10 µmol/L and 20 µmol/L, the IC50 of SKOV3 cells was increased to (11.199 ± 0.984) µg/ml and (14.906 ± 2.015) µg/ml, respectively. It suggested that the sensitivity of ovarian cancer cells to cisplatin was decreased significantly (P = 0.001). The expression of mTOR and Beclin1 mRNA and protein was significantly different among the five groups: the (Saquinavair+DDP) group of, Saquinavair group, LY294002 group, DDP group and control group (P < 0.001) . The expressions of mTOR and Beclin1 mRNA were highest in the (Saquinavair+DDP) group, 0.684 ± 0.072 and 0.647 ± 0.047, respectively; Secondly, the Saquinavair group, 0.577 ± 0.016 and 0.565 ± 0.037, respectively. The expressions of mTOR and Beclin1 proteins were also highest in the (Saquinavair+DDP) group, 0.624 ± 0.058 and 0.924 ± 0.033, respectively, followed by the Saquinavair group, 0.544 ± 0.019 and 0.712 ± 0.024. 3-MA inhibited the autophagy and restored cisplatin sensitivity in the SKOV3 cells after Saquinavir induced ER stress (P < 0.001).
CONCLUSIONSSaquinavir can effectively induce endoplasmic reticulum stress in SKOV3 cells. Endoplasmic reticulum stress can decrease the sensitivity to cisplatin in SKOV3 cells. The mechanism of the decrease of sensitivity to cisplatin in SKOV3 cells may be that ERS regulates cell autophagy through the mTOR and Beclin1 pathways. ERS of tumor cells and autophagy may become a new target to improve the therapeutic effect of chemotherapy and to reverse the drug resistance in tumor treatment.
Antineoplastic Agents ; pharmacology ; Apoptosis Regulatory Proteins ; genetics ; metabolism ; Autophagy ; drug effects ; Beclin-1 ; Cell Line, Tumor ; Cisplatin ; pharmacology ; Cystadenocarcinoma, Serous ; metabolism ; pathology ; Drug Resistance, Neoplasm ; Endoplasmic Reticulum Stress ; drug effects ; Female ; HIV Protease Inhibitors ; pharmacology ; Humans ; Membrane Proteins ; genetics ; metabolism ; Ovarian Neoplasms ; metabolism ; pathology ; RNA, Messenger ; Saquinavir ; pharmacology ; TOR Serine-Threonine Kinases ; genetics ; metabolism

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