目的探讨肿瘤坏死因子诱导蛋白3相互作用蛋白1(TNFAIP3-interacting protein 1,TNIP1)基因单核苷酸多态性及其mRNA表达水平与老年慢性心力衰竭患者肺部感染的相关性。方法选择2019年10月至2022年10月于上海建工医院重症医学科就诊的130...目的探讨肿瘤坏死因子诱导蛋白3相互作用蛋白1(TNFAIP3-interacting protein 1,TNIP1)基因单核苷酸多态性及其mRNA表达水平与老年慢性心力衰竭患者肺部感染的相关性。方法选择2019年10月至2022年10月于上海建工医院重症医学科就诊的130例老年慢性心力衰竭患者作为研究对象,根据是否于院内发生肺部感染分为感染组(32例)和未感染组(98例)。对TNIP1基因的两个SNP位点rs6889239(T>C)、rs17728338(A>G)进行基因分型,并检测外周血TNIP1基因的mRNA表达水平。结果TNIP1基因rs6889239位点在感染组和非感染组之间的基因型分布以及等位基因频率的差异均无统计学意义(P>0.05);两组的rs17728338位点AA、AG、GG基因型分布比较差异有统计学意义(P<0.05),且感染组等位基因G的频率显著高于未感染组(P<0.05)。相较于未感染组,感染组患者的外周血TNIP1基因mRNA表达水平显著增加,差异有统计学意义(P<0.001)。受试者工作特征(Receiver operating characteristic,ROC)曲线分析结果显示外周血TNIP1基因表达水平预测慢性心力衰竭患者发生肺部感染的灵敏度和特异度分别为71.9%和95.9%。感染组和非感染组TNIP1基因rs6889239位点不同基因型患者的外周血TNIP1基因的表达水平比较差异均无统计学意义(P>0.05),而rs17728338位点不同基因型患者的外周血TNIP1基因表达水平比较差异有统计学意义(P<0.05)。结论TNIP1基因rs17728338表达水平与老年慢性心力衰竭患者发生肺部感染有关。展开更多
Death receptors, including the TNF receptor-1 (TNF-RI), have been shown to be able to initiate caspase-independent cell death. This form of "necrotic cell death" appears to be dependent on the generation of reacti...Death receptors, including the TNF receptor-1 (TNF-RI), have been shown to be able to initiate caspase-independent cell death. This form of "necrotic cell death" appears to be dependent on the generation of reactive oxygen species. Recent data have indicated that superoxide generation is dependent on the activation of NADPH oxidases, which form a complex with the adaptor molecules RIP1 and TRADD. The mechanism of superoxide generation further establishes RIP1 as the central molecule in ROS production and cell death initiated by TNFa and other death receptors. A role for the sustained JNK activation in necrotic cell death is also suggested. The sensitization of virus-infected cells to TNFα indicates that necrotic cell death may represent an alternative cell death pathway for clearance of infected cells.展开更多
Objective: To study the roles of different truncated hepatitis C virus (HCV) core proteins (CORE) in the pathogenesis of HCV persistent infection and hepatocellular carcinoma (HCC) and to assess intracellular localiza...Objective: To study the roles of different truncated hepatitis C virus (HCV) core proteins (CORE) in the pathogenesis of HCV persistent infection and hepatocellular carcinoma (HCC) and to assess intracellular localization in transiently transfected cells. Methods: Seven truncated CORE-GFP (green fluorescent protein) fusion protein expression plasmids were constructed, which contained HCV CORE sequences derived from tumor tissues (BT) and non-tumor tissues (BNT) from one patient infected with HCV. Amino acid (aa) lengths were BT: 1?172 aa, 1?126 aa, 1?58 aa, 59?126 aa, 127?172 aa; BNT: 1?172 aa and C191: 1?172 aa respectively. Subcellular localization of CORE-GFP was analyzed by con-focal laser scanning microscope. Apoptosis and necrosis were quantified by flow cytometry. Results: Different truncated CORE-GFP localized mainly in the cytoplasm, but nuclear staining was also observed. HCV CORE could induce apoptosis and necrosis, and different truncated COREs could induce cell apoptosis and necrosis at different levels. Among the same length 1?172 aa of BT, BNT and C191, the cell apoptosis and necrosis percentage of BT is highest, and C191 is the lowest (BT>BNT>C191). To the different fragment COREs of BT, N-terminal of CORE induced apoptosis and necrosis higher, compared with that of C-terminal (1?172 aa>1?126 aa>1?58 aa>127?172 aa>59?126 aa). Conclusion: These results suggest HCV CORE could induce apoptosis and necrosis of cells, which might play an important role in the pathogenesis of HCV persistent infection and HCC and the different CORE domains of dif- ferent HCV quasi-species might have some difference in their pathogenesis.展开更多
Mixed lineage kinase 3 (MLK3) is a mitogen-activated protein kinase kinase kinase that is activated by tumor necrosis factor-α (TNF-α) and specifically activates c-Jun N-terminal kinase (JNK) on TNF-a stimulat...Mixed lineage kinase 3 (MLK3) is a mitogen-activated protein kinase kinase kinase that is activated by tumor necrosis factor-α (TNF-α) and specifically activates c-Jun N-terminal kinase (JNK) on TNF-a stimulation. The mecha- nism by which TNF-α activates MLK3 is still not known. TNF receptor-associated factors (TRAFs) are adapter molecules that are recruited to cytoplasmic end of TNF receptor and mediate the downstream signaling, including activation of JNK. Here, we report that MLK3 associates with TRAF2, TRAF5 and TRAF6; however only TRAF2 can significantly induce the kinase activity of MLK3. The interaction domain of TRAF2 maps to the TRAF domain and for MLK3 to its C-terminal half (amino acids 511-847). Endogenous TRAF2 and MLK3 associate with each other in response to TNF-α treatment in a time-dependent manner. The association between MLK3 and TRAF2 mediates MLK3 activation and competition with the TRAF2 deletion mutant that binds to MLK3 attenuates MLK3 kinase activity in a dose-dependent manner, on TNF-α treatment. Furthermore the downstream target of MLK3, JNK was activated by TNF-α in a TRAF2-dependent manner. Hence, our data show that the direct interaction between TRAF2 and MLK3 is required for TNF-α-induced activation of MLK3 and its downstream target, JNK.展开更多
Objective To explore the inhibitory effect of recombinant mutant human tumor necrosis factor-α(rmhTNF-α) in combination with cisplatin on human lung adenocarcinoma cell line A549. Methods Human lung adenocarcinoma c...Objective To explore the inhibitory effect of recombinant mutant human tumor necrosis factor-α(rmhTNF-α) in combination with cisplatin on human lung adenocarcinoma cell line A549. Methods Human lung adenocarcinoma cell line A549 was treated with varying concentrations of rmhTNF-α(0.38, 0.75, 1.50, 6.00 and 12.00 IU/ml) or cisplatin(3.91, 7.81, 15.63, 31.25 and 62.50 μg/ml) for 24 hours. Viable cell number was analyzed by using crystal violet staining. The inhibitory rates of A549 cells growth by the two drugs were calculated. For analyzing whether there was a synergistic effect of rmhTNF-α with cisplatin, A549 cells were treated with 0.75 IU/ml rmhTNF-α and increased concentrations of cisplatin. Results rmhTNF-α or cisplatin inhibited the growth of A549 cell lines in a dose-dependent manner. The inhibitory effect of rmhTNF-α combined with cisplatin was significantly greater than cisplatin alone at the same concentration(all P<0.01). Conclusion rmhTNF-α combined with cisplatin might have synergistic inhibitory effect on human lung adenocarcinoma cell line A549.展开更多
文摘目的探讨肿瘤坏死因子诱导蛋白3相互作用蛋白1(TNFAIP3-interacting protein 1,TNIP1)基因单核苷酸多态性及其mRNA表达水平与老年慢性心力衰竭患者肺部感染的相关性。方法选择2019年10月至2022年10月于上海建工医院重症医学科就诊的130例老年慢性心力衰竭患者作为研究对象,根据是否于院内发生肺部感染分为感染组(32例)和未感染组(98例)。对TNIP1基因的两个SNP位点rs6889239(T>C)、rs17728338(A>G)进行基因分型,并检测外周血TNIP1基因的mRNA表达水平。结果TNIP1基因rs6889239位点在感染组和非感染组之间的基因型分布以及等位基因频率的差异均无统计学意义(P>0.05);两组的rs17728338位点AA、AG、GG基因型分布比较差异有统计学意义(P<0.05),且感染组等位基因G的频率显著高于未感染组(P<0.05)。相较于未感染组,感染组患者的外周血TNIP1基因mRNA表达水平显著增加,差异有统计学意义(P<0.001)。受试者工作特征(Receiver operating characteristic,ROC)曲线分析结果显示外周血TNIP1基因表达水平预测慢性心力衰竭患者发生肺部感染的灵敏度和特异度分别为71.9%和95.9%。感染组和非感染组TNIP1基因rs6889239位点不同基因型患者的外周血TNIP1基因的表达水平比较差异均无统计学意义(P>0.05),而rs17728338位点不同基因型患者的外周血TNIP1基因表达水平比较差异有统计学意义(P<0.05)。结论TNIP1基因rs17728338表达水平与老年慢性心力衰竭患者发生肺部感染有关。
文摘Death receptors, including the TNF receptor-1 (TNF-RI), have been shown to be able to initiate caspase-independent cell death. This form of "necrotic cell death" appears to be dependent on the generation of reactive oxygen species. Recent data have indicated that superoxide generation is dependent on the activation of NADPH oxidases, which form a complex with the adaptor molecules RIP1 and TRADD. The mechanism of superoxide generation further establishes RIP1 as the central molecule in ROS production and cell death initiated by TNFa and other death receptors. A role for the sustained JNK activation in necrotic cell death is also suggested. The sensitization of virus-infected cells to TNFα indicates that necrotic cell death may represent an alternative cell death pathway for clearance of infected cells.
基金Project (No. 2001BA705B06) supported by a grant from the National Key Technologies R&D program (10th Five-Year Plan) of China
文摘Objective: To study the roles of different truncated hepatitis C virus (HCV) core proteins (CORE) in the pathogenesis of HCV persistent infection and hepatocellular carcinoma (HCC) and to assess intracellular localization in transiently transfected cells. Methods: Seven truncated CORE-GFP (green fluorescent protein) fusion protein expression plasmids were constructed, which contained HCV CORE sequences derived from tumor tissues (BT) and non-tumor tissues (BNT) from one patient infected with HCV. Amino acid (aa) lengths were BT: 1?172 aa, 1?126 aa, 1?58 aa, 59?126 aa, 127?172 aa; BNT: 1?172 aa and C191: 1?172 aa respectively. Subcellular localization of CORE-GFP was analyzed by con-focal laser scanning microscope. Apoptosis and necrosis were quantified by flow cytometry. Results: Different truncated CORE-GFP localized mainly in the cytoplasm, but nuclear staining was also observed. HCV CORE could induce apoptosis and necrosis, and different truncated COREs could induce cell apoptosis and necrosis at different levels. Among the same length 1?172 aa of BT, BNT and C191, the cell apoptosis and necrosis percentage of BT is highest, and C191 is the lowest (BT>BNT>C191). To the different fragment COREs of BT, N-terminal of CORE induced apoptosis and necrosis higher, compared with that of C-terminal (1?172 aa>1?126 aa>1?58 aa>127?172 aa>59?126 aa). Conclusion: These results suggest HCV CORE could induce apoptosis and necrosis of cells, which might play an important role in the pathogenesis of HCV persistent infection and HCC and the different CORE domains of dif- ferent HCV quasi-species might have some difference in their pathogenesis.
文摘Mixed lineage kinase 3 (MLK3) is a mitogen-activated protein kinase kinase kinase that is activated by tumor necrosis factor-α (TNF-α) and specifically activates c-Jun N-terminal kinase (JNK) on TNF-a stimulation. The mecha- nism by which TNF-α activates MLK3 is still not known. TNF receptor-associated factors (TRAFs) are adapter molecules that are recruited to cytoplasmic end of TNF receptor and mediate the downstream signaling, including activation of JNK. Here, we report that MLK3 associates with TRAF2, TRAF5 and TRAF6; however only TRAF2 can significantly induce the kinase activity of MLK3. The interaction domain of TRAF2 maps to the TRAF domain and for MLK3 to its C-terminal half (amino acids 511-847). Endogenous TRAF2 and MLK3 associate with each other in response to TNF-α treatment in a time-dependent manner. The association between MLK3 and TRAF2 mediates MLK3 activation and competition with the TRAF2 deletion mutant that binds to MLK3 attenuates MLK3 kinase activity in a dose-dependent manner, on TNF-α treatment. Furthermore the downstream target of MLK3, JNK was activated by TNF-α in a TRAF2-dependent manner. Hence, our data show that the direct interaction between TRAF2 and MLK3 is required for TNF-α-induced activation of MLK3 and its downstream target, JNK.
文摘Objective To explore the inhibitory effect of recombinant mutant human tumor necrosis factor-α(rmhTNF-α) in combination with cisplatin on human lung adenocarcinoma cell line A549. Methods Human lung adenocarcinoma cell line A549 was treated with varying concentrations of rmhTNF-α(0.38, 0.75, 1.50, 6.00 and 12.00 IU/ml) or cisplatin(3.91, 7.81, 15.63, 31.25 and 62.50 μg/ml) for 24 hours. Viable cell number was analyzed by using crystal violet staining. The inhibitory rates of A549 cells growth by the two drugs were calculated. For analyzing whether there was a synergistic effect of rmhTNF-α with cisplatin, A549 cells were treated with 0.75 IU/ml rmhTNF-α and increased concentrations of cisplatin. Results rmhTNF-α or cisplatin inhibited the growth of A549 cell lines in a dose-dependent manner. The inhibitory effect of rmhTNF-α combined with cisplatin was significantly greater than cisplatin alone at the same concentration(all P<0.01). Conclusion rmhTNF-α combined with cisplatin might have synergistic inhibitory effect on human lung adenocarcinoma cell line A549.