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PELI3、miR-744-5p在不同病理分级脑胶质瘤中的表达水平及临床意义
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作者 马小二 范云智 王国庆 《中国临床神经科学》 2024年第1期30-35,共6页
目的探讨不同病理分级脑胶质瘤中Pellino E3泛素蛋白连接酶家族成员3(PELI3)、微小RNA-744-5p(miR-744-5p)表达水平及意义。方法收集2016年10月至2019年10月确诊的100例脑胶质瘤患者(脑胶质瘤组)的组织标本及其临床病理资料,根据不同病... 目的探讨不同病理分级脑胶质瘤中Pellino E3泛素蛋白连接酶家族成员3(PELI3)、微小RNA-744-5p(miR-744-5p)表达水平及意义。方法收集2016年10月至2019年10月确诊的100例脑胶质瘤患者(脑胶质瘤组)的组织标本及其临床病理资料,根据不同病理分级将脑胶质瘤组分为低级别(Ⅰ~Ⅱ级)亚组46例和高级别(Ⅲ~Ⅳ级)亚组54例;同时选取90例急性颅脑损伤患者颅内减压术切除的脑组织为对照组。采用实时荧光定量PCR(qRT-PCR)检测组织miR-744-5p表达和免疫组化学法检测PELI3蛋白表达;采用多因素Cox回归分析脑胶质瘤患者复发的影响因素。结果脑胶质瘤组PELI3蛋白阳性率显著高于对照组,miR-744-5p水平显著低于对照组(均P<0.000)。高级别组PELI3蛋白阳性率显著高于低级别组,miR-744-5p水平显著低于低级别组(均P<0.000)。PELI3、miR-744-5p表达水平与年龄、性别、肿瘤直径、KPS评分、肿瘤部位均无相关性(均P>0.05)。miR-744-5p低表达患者复发率显著高于高表达患者(P<0.05);PELI3阳性患者复发率显著高于阴性患者(P<0.05)。PELI3、病理分级是脑胶质瘤患者复发的独立危险因素,miR-744-5p则是脑胶质瘤患者复发的保护因素(P<0.05)。结论脑胶质瘤患者PELI3阳性表达升高,miR-744-5p表达水平降低,两项检测指标可作为脑胶质瘤病理分级及临床复发判定的指标。 展开更多
关键词 脑胶质瘤 病理分级 pellino e3泛素蛋白连接酶家族成员3 微小RNA-744-5p 复发
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TRAF proteins as key regulators of plant development and stress responses 被引量:1
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作者 Hua Qi Fan-Nv Xia +1 位作者 Shi Xiao Juan Li 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2022年第2期431-448,共18页
Tumor necrosis factor receptor-associated factor(TRAF)proteins are conserved in higher eukaryotes and play key roles in transducing cellular signals across different organelles.They are characterized by their C-termin... Tumor necrosis factor receptor-associated factor(TRAF)proteins are conserved in higher eukaryotes and play key roles in transducing cellular signals across different organelles.They are characterized by their C-terminal region(TRAF-C domain)containing seven to eight antiparallelβ-sheets,also known as the meprin and TRAF-C homology(MATH)domain.Over the past few decades,significant progress has been made toward understanding the diverse roles of TRAF proteins in mammals and plants.Compared to other eukaryotic species,the Arabidopsis thaliana and rice(Oryza sativa)genomes encode many more TRAF/MATH domaincontaining proteins;these plant proteins cluster into five classes:TRAF/MATH-only,MATH-BPM,MATH-UBP(ubiquitin protease),Seven in absentia(SINA),and MATH-Filament and MATHPEARLI-4 proteins,suggesting parallel evolution of TRAF proteins in plants.Increasing evidence now indicates that plant TRAF proteins form central signaling networks essential for multiple biological processes,such as vegetative and reproductive development,autophagosome formation,plant immunity,symbiosis,phytohormone signaling,and abiotic stress responses.Here,we summarize recent advances and highlight future prospects for understanding on the molecular mechanisms by which TRAF proteins act in plant development and stress responses. 展开更多
关键词 AUTOPHAGY e3 ubiquitin ligase hormone signaling plant development plant stress responses protein adaptor TRAF family proteins
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