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国家自然科学基金(30270482)

作品数:4 被引量:3H指数:1
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Effect of α-synuclein on the promoter activity of tyrosine hydroxylase gene被引量:2
2007年
Objective To approach the associated mechanism by which α-synuclein (α-Syn) might regulate the metabolism of dopamine. Methods A DNA fragment, located at --495 to +25 of the human tyrosine hydroxylase (TH) gene, was amplified by PCR and inserted into the pGL3-Basic luciferase reporter vector. The recombinant plasmid pGL3-THprom was transfected into a dopammergic cell line MES23.5 or a α-Syn over-expressed MES23.5 (named MES23.5/hα-Syn^+). The promoter activity was detected by the Dual Luciferase Assay System. Results The luciferase activities in the MES23.5 cells transfected with pGl.,3-Basic, pGL3-THprom, and pGL3-Control vectors were 5.60±0.67, 26.80±4.11, and 32.90±4.75, respectively. On the other hand, the luciferase activity of pGL3-THprom in the MES23.5 (26.80±4.11) was significantly higher than that in the MES23.5/hα-Syn^+(14.40±0.61) (P〈0.01). Conclusion These results indicate that the -495 to +25 region in the TH gene possesses promoter activity for controlling the gene expression, and that α-Syn may negatively regulate the metabolism of dopamine by affecting the function of TH promoter as a trans-acting factor.
高楠李尧华李昕于顺傅桂莲陈彪
关键词:Α-SYNUCLEIN
14-3-3ζ蛋白单克隆抗体的制备、鉴定及初步应用
2009年
为了探讨14-3-3ζ蛋白在中枢神经系统内的分布,本文采用纯化的基因重组型14-3-3ζ蛋白免疫Balb/c小鼠,用杂交瘤技术制备抗14-3-3ζ蛋白单克隆抗体;Western blot及免疫组织化学法鉴定抗体。结果显示:制备的单克隆抗体能特异性识别基因重组14-3-3ζ蛋白和大鼠脑匀浆32kD蛋白。免疫组化染色结果显示,14-3-3ζ蛋白在大鼠中枢神经系统广泛分布,在皮层、海马、杏仁核和基底前脑的免疫阳性染色较强,免疫阳性产物位于神经元胞浆内。本研究结果提示,14-3-3ζ蛋白可能具有多样化的生理功能。
董长松李尧华叶懿文李昕于顺杨慧陈彪
关键词:单克隆抗体中枢神经系统
基因重组型人SORL1蛋白质片段的原核表达和纯化
2011年
目的制备基因重组型人SORL1蛋白质片段,为探讨阿尔茨海默病的发病机制提供实验基础。方法采用PCR方法扩增人sorl1 cDNA编码区5 923~6 260 bp片段,克隆入原核表达载体pET-28a(+)中。用大肠杆菌BL21(DE3)plysS表达重组质粒,用液相色谱法纯化基因重组蛋白。结果 PCR扩增产物为358 bp,其ATG和TGA之间的结构与人sorl1 cDNA的5 923~6 260 bp区完全一致。基因重组质粒在大肠杆菌BL21(DE3)plysS中高效表达,其表达产物存在于包涵体组分中。纯化的基因重组蛋白在SDS-PAGE中表现为单一条带,表观分子量约为13 000。结论人sorl1 cDNA的5 923~6 260 bp片段在原核细胞中大量表达,纯化后的基因重组蛋白可尝试用于抗体的制备。
李爽李尧华叶懿文李昕于顺杨慧陈彪
关键词:基因重组蛋白阿尔茨海默病
cDNA cloning, prokaryotic expression and purification of rat α-synuclein被引量:1
2006年
Objective To clone the cDNA of rat α-Syn gene, investigate its prokaryotic expression and produce purified recombinant rat α-Syn protein. Methods Rat α-Syn cDNA was amplified from the rat brain total RNA by RT-PCR and was cloned into pGEX-4T-1, a prokaryotic expressing vector. The recombinant plasmid containing rat α-Syn gene was transformed into E. Coli BL21 to express a fusion protein with rat α-Syn protein tagged by glutathione-S-transferase (GST). The fusion protein was then cleaved by thrombin during passing through the GST-agarose 4B column to release the recombinant rat α-Syn protein. The recombinant rat a-Syn protein was further purified using Superdex S200 gel filtration. Results DNA sequencing confirmed that the cloned cDNA contained 420 base pairs encoding 140 amino acids, which was identical to the reported amino acid sequence of rat α-Syn. After transformation, the recombinant plasmid pGEX-ra-Syn expressed a soluble protein that was inducible by IPTG. The purified recombinant protein was shown to be single band on SDS-PAGE, with a molecular size of around 18000, which was identical to the reported molecular size of rat α-Syn. Western blot analysis demonstrated that the recombinant protein was recognized by specific antibody against α-Syn. Conclusion The rat α-Syn gene was successfully expressed in prokaryotic expression system and highly purified rat α-Syn recombinant protein was produced.
Xin LI Yao-Hua LI Jun-Yan HAN Shun YU Biao CHEN
关键词:Α-SYNUCLEINRATPURIFICATION
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