AIM To investigate the prevalence and virological characteristics of occult hepatitis B virus(HBV) infections in patients with hematological malignancies in South Egypt.METHODS Serum samples were collected from 165 pa...AIM To investigate the prevalence and virological characteristics of occult hepatitis B virus(HBV) infections in patients with hematological malignancies in South Egypt.METHODS Serum samples were collected from 165 patients with hematological malignancies to monitor titers of HBV DNA, hepatitis B surface antigen(HBs Ag), and antibodies to HBV core(anti-HBc) and surface antigens. Serum samples negative for HBs Ag and positive for anti-HBc were subjected to nucleic acid extraction and HBV DNA detection by real-time polymerase chain reaction. DNA sequences spanning the S region were analyzed in cases with occult HBV infection. In vitro comparative study of constructed 1.24-fold wild type and S protein mutant HBV genotype D clones was further performed. RESULTS HBV DNA was detected in 23(42.6%) of 54 patients with hematological malignancies who were HBsA g negative, but anti-HBc positive, suggesting the presence of occult HBV infection. The complete HBV genome was retrieved from 6 occult HBV patients, and P120 T and S143 L were detected in 3 and 2 cases, respectively. Site directed mutagenesis was done to produce 1.24-fold genotype D clones with amino acid mutations T120 and L143. The in vitro analyses revealed that a lower level of extracellular HBsA g was detected by chemiluminescence enzyme immunoassay(CLEIA) with the clone containing T120 mutation, compared with the wild type or the clone with S143 L mutation despite the similar levels of extracellular and intracellular HBs Ag detected by Western blot. Southern blot experiments showed that the levels of intracellular HBV DNA were not different between these clones. CONCLUSION Occult HBV infection is common in patients with hematological malignancies and associated with P120 T and S143 L mutations. 120 T mutation impairs the detection of HBsA g by CLEIA.展开更多
It is unclear whether immune escape-associated mutations in the major hydrophilic region of hepatitis B virus surface antigen(HBsAg)are associated with nucleoside/nucleotide analog resistance.AIM To evaluate the assoc...It is unclear whether immune escape-associated mutations in the major hydrophilic region of hepatitis B virus surface antigen(HBsAg)are associated with nucleoside/nucleotide analog resistance.AIM To evaluate the association between immune escape-associated mutations and nucleoside/nucleotide analog resistance mutations.METHODS In total,19440 patients with chronic hepatitis B virus infection,who underwent resistance testing at the Fifth Medical Center of Chinese PLA General Hospital between July 2007 and December 2017,were enrolled.As determined by sequence analysis,6982 patients harbored a virus with resistance mutations and 12458 harbored a virus lacking resistance mutations.Phenotypic analyses were performed to evaluate HBsAg production,replication capacity,and drug-induced viral inhibition of patient-derived drug-resistant mutants with or without the coexistence of sA159V.RESULTS The rate of immune escape-associated mutation was significantly higher in 9 of the 39 analyzed mutation sites in patients with resistance mutations than in patients without resistance mutations.In particular,these mutations were sQ101H/K/R,sS114A/L/T,sT118A/K/M/R/S/V,sP120A/L/Q/S/T,sT/I126A/N/P/S,sM133I/L/T,sC137W/Y,sG145A/R,and sA159G/V.Among these,sA159V was detected in 1.95%(136/6982)of patients with resistance mutations and 1.08%(134/12,458)of patients lacking resistance mutations(P<0.05).The coexistence of sA159V with lamivudine(LAM)and entecavir(ETV)-resistance mutations in the same viral genome was identified during follow-up in some patients with drug resistance.HBsAg production was significantly lower and the replication capacity was significantly higher,without a significant difference in LAM/ETV susceptibility,in sA159V-containing LAM/ETV-resistant mutants than in their sA159V-lacking counterparts.CONCLUSION In summary,we observed a close link between the increase in certain immune escape-associated mutations and the development of resistance mutations.sA159V might increase the fitness of LAM/ETV-resistant mutants under env展开更多
Coronavirus disease 2019(COVID-19)is caused by severe acute respiratory syndrome coronavirus 2(SARS-CoV-2).The Spike protein that mediates coronavirus entry into host cells is a major target for COVID-19 vaccines and ...Coronavirus disease 2019(COVID-19)is caused by severe acute respiratory syndrome coronavirus 2(SARS-CoV-2).The Spike protein that mediates coronavirus entry into host cells is a major target for COVID-19 vaccines and antibody therapeutics.However,multiple variants of SARS-CoV-2 have emerged,which may potentially compromise vaccine effectiveness.Using a pseudovirus-based assay,we evaluated SARS-CoV-2 cell entry mediated by the viral Spike B.1.617 and B.1.1.7 variants.We also compared the neutralization ability of monoclonal antibodies from convalescent sera and neutralizing antibodies(NAbs)elicited by CoronaVac(inactivated vaccine)and ZF2001(RBD-subunit vaccine)against B.1.617 and B.1.1.7 variants.Our results showed that,compared to D614G and B.1.1.7 variants,B.1.617 shows enhanced viral entry and membrane fusion,as well as more resistant to antibody neutralization.These findings have important implications for understanding viral infectivity and for immunization policy against SARS-CoV-2 variants.展开更多
特异性细胞毒性T淋巴细胞(Cytotoxic T lymphocyte,CTL)在控制人类免疫缺陷病毒(Human immunodeficiency virus,HIV)感染和病毒复制过程中起关键作用。HIV-1通过在CTL表位内部或侧翼发生突变逃逸HLA限制性CTL造成的免疫压力,但是部分逃...特异性细胞毒性T淋巴细胞(Cytotoxic T lymphocyte,CTL)在控制人类免疫缺陷病毒(Human immunodeficiency virus,HIV)感染和病毒复制过程中起关键作用。HIV-1通过在CTL表位内部或侧翼发生突变逃逸HLA限制性CTL造成的免疫压力,但是部分逃逸突变是以损失病毒适应性为代价。病毒逃逸会导致相应CTL反应水平减弱,免疫系统会产生针对突变病毒株的CTL反应。HIV-1逃逸突变与宿主的CTL反应在宿主体内相互博弈。本文重点综述CTL免疫压力下HIV-1病毒发生逃逸突变的研究进展。展开更多
基金Supported by Japan Society for the Promotion of Science,No.15H05289
文摘AIM To investigate the prevalence and virological characteristics of occult hepatitis B virus(HBV) infections in patients with hematological malignancies in South Egypt.METHODS Serum samples were collected from 165 patients with hematological malignancies to monitor titers of HBV DNA, hepatitis B surface antigen(HBs Ag), and antibodies to HBV core(anti-HBc) and surface antigens. Serum samples negative for HBs Ag and positive for anti-HBc were subjected to nucleic acid extraction and HBV DNA detection by real-time polymerase chain reaction. DNA sequences spanning the S region were analyzed in cases with occult HBV infection. In vitro comparative study of constructed 1.24-fold wild type and S protein mutant HBV genotype D clones was further performed. RESULTS HBV DNA was detected in 23(42.6%) of 54 patients with hematological malignancies who were HBsA g negative, but anti-HBc positive, suggesting the presence of occult HBV infection. The complete HBV genome was retrieved from 6 occult HBV patients, and P120 T and S143 L were detected in 3 and 2 cases, respectively. Site directed mutagenesis was done to produce 1.24-fold genotype D clones with amino acid mutations T120 and L143. The in vitro analyses revealed that a lower level of extracellular HBsA g was detected by chemiluminescence enzyme immunoassay(CLEIA) with the clone containing T120 mutation, compared with the wild type or the clone with S143 L mutation despite the similar levels of extracellular and intracellular HBs Ag detected by Western blot. Southern blot experiments showed that the levels of intracellular HBV DNA were not different between these clones. CONCLUSION Occult HBV infection is common in patients with hematological malignancies and associated with P120 T and S143 L mutations. 120 T mutation impairs the detection of HBsA g by CLEIA.
基金the National Natural Science Foundation of China,No.81572010,No.81671399,No.81721002 and No.81971329the Capital Health Research and Development of Special Fund Program,No.2016-2-5032and the Beijing Natural Science Foundation No.7172206.
文摘It is unclear whether immune escape-associated mutations in the major hydrophilic region of hepatitis B virus surface antigen(HBsAg)are associated with nucleoside/nucleotide analog resistance.AIM To evaluate the association between immune escape-associated mutations and nucleoside/nucleotide analog resistance mutations.METHODS In total,19440 patients with chronic hepatitis B virus infection,who underwent resistance testing at the Fifth Medical Center of Chinese PLA General Hospital between July 2007 and December 2017,were enrolled.As determined by sequence analysis,6982 patients harbored a virus with resistance mutations and 12458 harbored a virus lacking resistance mutations.Phenotypic analyses were performed to evaluate HBsAg production,replication capacity,and drug-induced viral inhibition of patient-derived drug-resistant mutants with or without the coexistence of sA159V.RESULTS The rate of immune escape-associated mutation was significantly higher in 9 of the 39 analyzed mutation sites in patients with resistance mutations than in patients without resistance mutations.In particular,these mutations were sQ101H/K/R,sS114A/L/T,sT118A/K/M/R/S/V,sP120A/L/Q/S/T,sT/I126A/N/P/S,sM133I/L/T,sC137W/Y,sG145A/R,and sA159G/V.Among these,sA159V was detected in 1.95%(136/6982)of patients with resistance mutations and 1.08%(134/12,458)of patients lacking resistance mutations(P<0.05).The coexistence of sA159V with lamivudine(LAM)and entecavir(ETV)-resistance mutations in the same viral genome was identified during follow-up in some patients with drug resistance.HBsAg production was significantly lower and the replication capacity was significantly higher,without a significant difference in LAM/ETV susceptibility,in sA159V-containing LAM/ETV-resistant mutants than in their sA159V-lacking counterparts.CONCLUSION In summary,we observed a close link between the increase in certain immune escape-associated mutations and the development of resistance mutations.sA159V might increase the fitness of LAM/ETV-resistant mutants under env
基金supported by the National Natural Science Foundation of China(No.U20A20392)the 111 Project(No.D20028)+6 种基金Open Research Fund Program of the Key Laboratory of Molecular Biology for Infectious Diseases,China(No.CQMU202102 and CQMU202105)The Science and Technology Research Program of Chongqing Municipal Education Commission,China(No.KJZD-M202000401)The Natural Science Foundation Project of Chongqing,China(No.cstc2019jscx-dxwtBX0019)The Emergency Project from the Science&Technology Commission of Chongqing,China(No.cstc2020jscx-fyzx0053 and cstc2020jscx-dxwtB0050)Kuanren Talents Program of the second affiliated hospital of Chongqing Medical University,the Emergency Project for Novel Coronavirus Pneumonia from the Chongqing Medical University,China(No.CQMUNCP0302)China Postdoctoral Science Foundation,China(No.2021M693924)Chongqing Postdoctoral Science Special Foundation,China(No.2010010005216630).
文摘Coronavirus disease 2019(COVID-19)is caused by severe acute respiratory syndrome coronavirus 2(SARS-CoV-2).The Spike protein that mediates coronavirus entry into host cells is a major target for COVID-19 vaccines and antibody therapeutics.However,multiple variants of SARS-CoV-2 have emerged,which may potentially compromise vaccine effectiveness.Using a pseudovirus-based assay,we evaluated SARS-CoV-2 cell entry mediated by the viral Spike B.1.617 and B.1.1.7 variants.We also compared the neutralization ability of monoclonal antibodies from convalescent sera and neutralizing antibodies(NAbs)elicited by CoronaVac(inactivated vaccine)and ZF2001(RBD-subunit vaccine)against B.1.617 and B.1.1.7 variants.Our results showed that,compared to D614G and B.1.1.7 variants,B.1.617 shows enhanced viral entry and membrane fusion,as well as more resistant to antibody neutralization.These findings have important implications for understanding viral infectivity and for immunization policy against SARS-CoV-2 variants.
文摘特异性细胞毒性T淋巴细胞(Cytotoxic T lymphocyte,CTL)在控制人类免疫缺陷病毒(Human immunodeficiency virus,HIV)感染和病毒复制过程中起关键作用。HIV-1通过在CTL表位内部或侧翼发生突变逃逸HLA限制性CTL造成的免疫压力,但是部分逃逸突变是以损失病毒适应性为代价。病毒逃逸会导致相应CTL反应水平减弱,免疫系统会产生针对突变病毒株的CTL反应。HIV-1逃逸突变与宿主的CTL反应在宿主体内相互博弈。本文重点综述CTL免疫压力下HIV-1病毒发生逃逸突变的研究进展。