比较表达于大肠杆菌中的人源性抗细胞毒性T淋巴细胞抗原4单链抗体(A n ti-CTLA 4 scFv)的三种体外复性方法的复性效率。稀释、透析和亲和柱上三种复性方式复性A n ti-CTLA 4 scFv,采用B rad ford法分析蛋白复性得率,采用间接细胞EL ISA...比较表达于大肠杆菌中的人源性抗细胞毒性T淋巴细胞抗原4单链抗体(A n ti-CTLA 4 scFv)的三种体外复性方法的复性效率。稀释、透析和亲和柱上三种复性方式复性A n ti-CTLA 4 scFv,采用B rad ford法分析蛋白复性得率,采用间接细胞EL ISA法检测所得蛋白的活性。透析复性蛋白得率最高,稀释复性蛋白得率其次,亲和柱上复性蛋白得率最低;透析复性所得蛋白结合活性是稀释复性的1.95倍,是亲和柱上复性所得蛋白活性的4.13倍(无谷胱甘肽氧化还原对G SH/G SSH)及3.63倍(有G SH/G SSH)。结论:采用含0.15 m o l/L N aC、l1 mm o l/L G SSH和3 mm o l/L G SH的50 mm o l/L T ris-HC l(pH 8.0)缓冲液作为A n ti-CTLA 4 scFv的复性液,4℃下透析复性48 h,可获得较高复性得率和结合活性。展开更多
Inclusion bodies(IBs)of respiratory syncytial virus(RSV)are formed by liquid-liquid phase separation(LLPS)and contain internal structures termed“IB-associated granules”(IBAGs),where anti-termination factor M2-1 and ...Inclusion bodies(IBs)of respiratory syncytial virus(RSV)are formed by liquid-liquid phase separation(LLPS)and contain internal structures termed“IB-associated granules”(IBAGs),where anti-termination factor M2-1 and viral mRNAs are concentrated.However,the mechanism of IBAG formation and the physiological function of IBAGs are unclear.Here,we found that the internal structures of RSV IBs are actual M2-1-free viral messenger ribonucleoprotein(mRNP)condensates formed by secondary LLPS.Mechanistically,the RSV nucleoprotein(N)and M2-1 interact with and recruit PABP to IBs,promoting PABP to bind viral mRNAs transcribed in IBs by RNArecognition motif and drive secondary phase separation.Furthermore,PABP-eIF4G1 interaction regulates viral mRNP condensate composition,thereby recruiting specific translation initiation factors(eIF4G1,eIF4E,eIF4A,eIF4B and eIF4H)into the secondary condensed phase to activate viral mRNAs for ribosomal recruitment.Our study proposes a novel LLPS-regulated translation mechanism during viral infection and a novel antiviral strategy via targeting on secondary condensed phase.展开更多
文摘比较表达于大肠杆菌中的人源性抗细胞毒性T淋巴细胞抗原4单链抗体(A n ti-CTLA 4 scFv)的三种体外复性方法的复性效率。稀释、透析和亲和柱上三种复性方式复性A n ti-CTLA 4 scFv,采用B rad ford法分析蛋白复性得率,采用间接细胞EL ISA法检测所得蛋白的活性。透析复性蛋白得率最高,稀释复性蛋白得率其次,亲和柱上复性蛋白得率最低;透析复性所得蛋白结合活性是稀释复性的1.95倍,是亲和柱上复性所得蛋白活性的4.13倍(无谷胱甘肽氧化还原对G SH/G SSH)及3.63倍(有G SH/G SSH)。结论:采用含0.15 m o l/L N aC、l1 mm o l/L G SSH和3 mm o l/L G SH的50 mm o l/L T ris-HC l(pH 8.0)缓冲液作为A n ti-CTLA 4 scFv的复性液,4℃下透析复性48 h,可获得较高复性得率和结合活性。
基金supported by the grants from National Key R&D Program of China(2021YFC2300702 and 2021YFC2300200)the Hubei Provincial Natural Science Foundation of China(2021CFB364)+1 种基金the National Natural Science Foundation of China(82130064,81825015,U22A20337 and 32000119)the Key Biosafety Science and Technology Program of Hubei Jiangxia Laboratory(JXBS001).
文摘Inclusion bodies(IBs)of respiratory syncytial virus(RSV)are formed by liquid-liquid phase separation(LLPS)and contain internal structures termed“IB-associated granules”(IBAGs),where anti-termination factor M2-1 and viral mRNAs are concentrated.However,the mechanism of IBAG formation and the physiological function of IBAGs are unclear.Here,we found that the internal structures of RSV IBs are actual M2-1-free viral messenger ribonucleoprotein(mRNP)condensates formed by secondary LLPS.Mechanistically,the RSV nucleoprotein(N)and M2-1 interact with and recruit PABP to IBs,promoting PABP to bind viral mRNAs transcribed in IBs by RNArecognition motif and drive secondary phase separation.Furthermore,PABP-eIF4G1 interaction regulates viral mRNP condensate composition,thereby recruiting specific translation initiation factors(eIF4G1,eIF4E,eIF4A,eIF4B and eIF4H)into the secondary condensed phase to activate viral mRNAs for ribosomal recruitment.Our study proposes a novel LLPS-regulated translation mechanism during viral infection and a novel antiviral strategy via targeting on secondary condensed phase.