在真核生物细胞囊泡运输过程中的膜融合主要是由SNARE蛋白介导的, OsNPSN11是从水稻中克隆的Qb-SNARE家族基因, 文章将OsNPSN11构建到原核表达载体pET-30a中与6个His标签融合, 重组质粒pET-OsNPSN11转化BL21(DE3)0.5 mmol/L IPTG诱导4 h后获得了高效表达。用镍离子亲和树脂(Ni2+-NTA His Bind Resin) 纯化融合蛋白, 以纯化后的蛋白为抗原免疫新西兰家兔制备多克隆抗体, Western blotting结果显示, 该抗体能特异识别在原核系统表达的抗原, 以及水稻不同组织质膜组分中的OsNPSN11, 可用于转基因水稻中目标蛋白的表达分析。
Membrane fusion in vesicle trafficking in the cells of eukaryotic organisms is mediated by soluble-N-ethyl- maleimide-sensitive fusion protein attachment protein receptor (SNARE) proteins. OsNPSN11 is a member of Qb-SNARE gene family isolate from rice. The cDNA of OsNPSN11 was subcloned into pET-30a and fusion to the 6 × His tag. Induced by 0.5 mmol/L IPTG for four hours, the recombinant protein was highly expressed in Escherichia coli, which was purified by Ni2+ -NTA His-bind resin affinity chromatography column to be used as an antigen to raise the antibody in New Zealand rabbits. Western blotting analysis showed that the antibody can specifically recognize the expressed antigen and the OsNPSN11 in plasma membrane protein from various rice tissues. This indicated that the antibody can be used for expres-sion analysis in transgenic rice.
[1] Bassham DC, Sanderfoot AA, Kovaleva V, Zheng HY, Raikhel NV. AtVPS45 complex formation at the trans-Golgi network. Mol Biol Cell, 2000, 11: 2251–2265.
[2] Bock JB, Matern HT, Peden AA, Scheller RH. A genomic perspective on membrane compartment organization. Nature, 2001, 409(6822): 839–841.
[3] 张弗盈, 王文杰. 膜融合中的SNAREs及其相关蛋白研究进展. 医学综述, 2004, 10(12): 734–736.
[4] Pratelli R, Sutter JU, Blatt MR. A new catch in the SNARE. Trends Plant Sci, 2004, 9(4): 187–195.
[5] 封华, 陈晨, 王义琴, 邱金龙, 储成才, 杜希华. 植物可溶性N-乙基马来酰亚胺敏感因子连接物复合体(SNAREs)及其生物学功能研究进展. 遗传, 2009, 31(5): 471–478.
[6] 鲍永美, 王州飞, 张红生.植物SNARE蛋白的结构与功能. 植物学通报, 2005, 22(6): 716–723.
[7] Zheng H, Bednarek SY, Sanderfoot AA, Alonso J, Ecker JR, Raikhel NV. NPSN11 is a cell plate-associated SNARE protein that interacts with the syntaxin KNOLLE. Plant Physiol, 2002, 129(2): 530–539.
[8] Bao YM, Wang JF, Huang J, Zhang HS. Cloning and characterization of three genes encoding Qb-SNARE pro-teins in rice. Mol Genet Genomics, 2008, 279(3): 291–301.
[9] 鲍永美. 水稻SNARE蛋白基因的克隆与功能分析[学位论文]. 南京农业大学, 2007.
[10] Braford MM, McRorie RA, Williams WL. A rapid and sensitive method for the quantification of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem, 1976, 72(2): 248–254.
[11] Feng Y, Zhu YY, Muller C, Zorb C, Schubert S. Adapta-tion of H-pumping and plasma membrane H-ATPase ac-tivity in proteoid roots of white lupin under phosphate de-ficiency. Plant Physiol, 2002, 129(1): 50–63.
[12] Bao YM, Wang JF, Huang J, Zhang HS. Molecular cloning and characterization of a novel SNAP25-type protein gene OsSNAP32 in rice (Oryza sativa L.). Mol Biol Rep, 2008, 35(2): 145–152.