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Chimeric oncogenic interferon regulatory factor-2 (IRF-2): Degradation products are biologically active
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作者 Krishna Prakash Pardeep Kumar Pramod C. Rath 《American Journal of Molecular Biology》 2012年第4期371-379,共9页
Interferon Regulatory Factor-2 (IRF-2) belongs to IRF family, was identified as a mammalian transcription factor involved in Interferon beta (IFNβ) gene regulation. Besides that IRF-2 is involved in immunomodulation,... Interferon Regulatory Factor-2 (IRF-2) belongs to IRF family, was identified as a mammalian transcription factor involved in Interferon beta (IFNβ) gene regulation. Besides that IRF-2 is involved in immunomodulation, hematopoietic differentiation, cell cycle regulation and oncogenesis. We have done molecular sub-cloning and expression of recombinant murine IRF-2 as GST (Glutathione-S-Transferase)- IRF-2 fusion protein in E. coli/XL-1blue cells. Recombinant IRF-2 with GST moiety at N-terminus expressed as GST-IRF-2 (~66 kd) in E. coli along with different low molecular mass degradation products revealed approximately 30, 42, 60 and 62 kd by SDS-PAGE and Western blot, respectively. We further confirm that degradation takes place at C-terminus of the fusion protein not at N-terminus as anti-GST antibody was detecting all bands in the immunoblot. The recombinant IRF-2 was biologically active along with their degradation products in terms of their DNA binding activity as assessed by Electrophoretically Mobility Shift Assay (EMSA). We observed three different molecular mass DNA/protein complexes (1 - 3) with Virus Response Element (VRE) derived from human Interferon IFNβ gene and five different molecular mass complexes (1 - 5) with IRF-E motif (GAAAGT)4 in EMSA gel. GST only expressed from empty vector did not bind to these DNA elements. To confirm that the binding is specific, all complexes were competed out completely when challenged with 100-X fold molar excess of IRF-E oligo under cold competition. It means degradation products along with full-length protein are able to interact with VREβ as well as IRF-E motif. This means degradation products may regulate the target gene (s) activation/repression via interacting with VRE/IRF-E. 展开更多
关键词 RECOMBINANT INTERFERON regulatory factor-2 (IRF-2) DNA Binding Domain (DBD) C-TERMINUS of IRF-2 EMSA
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视前区调控因子-2在中枢神经系统中的研究进展
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作者 程安东 迟俊鹏 +2 位作者 牛钰茜 徐永赛 冯东福 《医学综述》 CAS 2023年第16期3129-3133,共5页
中枢神经系统疾病严重影响人类健康和社会发展,已成为全球范围内的重大公共卫生问题。成年哺乳动物中枢神经系统再生困难,因此中枢神经系统疾病的治疗仍是重大医学难题。Rho GTP酶激活蛋白参与了细胞生长、细胞动力学、细胞膜转运和细... 中枢神经系统疾病严重影响人类健康和社会发展,已成为全球范围内的重大公共卫生问题。成年哺乳动物中枢神经系统再生困难,因此中枢神经系统疾病的治疗仍是重大医学难题。Rho GTP酶激活蛋白参与了细胞生长、细胞动力学、细胞膜转运和细胞凋亡的病理生理过程。视前区调控因子-2作为Rho GTP酶激活蛋白家族的重要成员,参与中枢神经系统中多种病理生理过程,包括神经元轴突的生长与导向、神经元树突的形成、神经干细胞的调控、肿瘤的转移等,在神经内分泌疾病、中枢神经损伤修复以及神经肿瘤等研究领域具有重要意义。 展开更多
关键词 中枢神经系统 视前区调控因子-2 Rho GTP酶激活蛋白
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Porf-2基因过表达慢病毒载体的构建以及神经细胞的转染 被引量:2
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作者 黄国辉 杨西涛 +4 位作者 陈奎 邢进 朱亮 李泓江 冯东福 《上海交通大学学报(医学版)》 CAS CSCD 北大核心 2015年第12期1809-1813,共5页
目的构建视前区调控因子2(Porf-2)与绿色荧光蛋白(GFP)共表达的慢病毒载体,包装慢病毒并体外感染神经细胞。方法根据Gen Bank中基因信息,设计Porf-2的引物,采用PCR扩增Porf-2基因片段;运用基因重组技术,双酶切Porf-2,并将其克隆至p LVX-... 目的构建视前区调控因子2(Porf-2)与绿色荧光蛋白(GFP)共表达的慢病毒载体,包装慢病毒并体外感染神经细胞。方法根据Gen Bank中基因信息,设计Porf-2的引物,采用PCR扩增Porf-2基因片段;运用基因重组技术,双酶切Porf-2,并将其克隆至p LVX-IRES-Zs Green1载体,经酶切、测序加以鉴定重组质粒。将成功构建的质粒与包装系统VSVG、Δ89质粒共转染293T细胞,包装慢病毒并测定滴度。结果经酶切和测序鉴定表明成功构建了p LVX-Porf-2-IRES-Zs Green1的基因重组慢病毒载体;将成功包装的病毒感染NG108细胞、海马原代神经元以及神经干细胞后,可观察到大量绿色荧光表达;Western blotting证实Porf-2成功过表达。结论成功构建Porf-2与GFP基因共表达的慢病毒载体、包装慢病毒,并感染NG108、海马原代神经元以及神经干细胞。 展开更多
关键词 视前区调控因子2 绿色荧光蛋白 慢病毒 神经细胞
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