番茄SlHSP21-1/2基因原核表達及多克隆抗體製備與鑒定

    Prokaryotic Expression of Tomato SlHSP21-1/2 and Preparation and Characterization of Its Polyclonal Antibody

    • 摘要:
      目的 對番茄(Solanum lycopersicumSlHSP21-1/2基因進行原核表達,並製備和鑒定其多克隆抗體,為深入探究該基因的作用機製提供基礎。
      方法 以番茄為材料克隆獲得SlHSP21-1/2基因的編碼序列,並通過生物信息學分析預測其理化性質及亞細胞定位。設計特異性引物擴增目標基因片段,構建原核表達載體並轉化入BL21(DE3)原核表達菌,通過IPTG誘導表達重組蛋白;表達產物經SDS-PAGE檢測並采用Ni-NTA親和層析純化,將純化後的蛋白用於免疫新西蘭兔,多次免疫獲得血清,並鑒定多克隆抗體的特異性。
      結果 生物信息學分析結果表明,SlHSP21-1/2蛋白具有典型的小熱激蛋白結構特征,包括保守的α-晶體結構域和高度保守的N/C端區域;亞細胞定位預測結果顯示,該蛋白主要定位於葉綠體。SDS-PAGE凝膠電泳顯示SlHSP21-1/2融合蛋白成功表達,主要以包涵體的形式表達;經Ni-NTA親和層析純化後,獲得的重組蛋白純度較高,為免疫試驗提供了可靠的抗原來源。利用該重組蛋白免疫新西蘭兔獲得的多克隆抗血清,在Western blot試驗中能夠特異性識別目標蛋白條帶,表明所製備的多克隆抗體具有較好的特異性。
      結論 成功實現SlHSP21-1/2基因的原核表達,並製備特異性較好的多克隆抗體。

       

      Abstract:
      Objective To achieve prokaryotic expression of the tomato (Solanum lycopersicum) SlHSP21-1/2 gene and to prepare and characterize its polyclonal antibody, providing a foundation for further studies on its biological function.
      Method The coding sequences of SlHSP21-1/2 genes were cloned from tomato and subjected to bioinformatic analyses to predict their physicochemical properties and subcellular localization. Gene-specific primers were designed for amplification of the target fragments, which were then inserted into a prokaryotic expression vector. The recombinant plasmids were transformed into Escherichia coli BL21 (DE3) expression strain, and recombinant protein expression was induced by IPTG. The expressed proteins were analyzed by SDS-PAGE and purified using Ni-NTA affinity chromatography. The purified proteins were used as antigens to immunize New Zealand rabbits. Polyclonal antibodies were obtained through multiple immunizations, and their specificity were evaluated.
      Result Bioinformatics analysis indicated that SlHSP21-1/2 proteins possess contain typical features of small heat shock protein, including a conserved α-crystallin domain and highly conserved N- and C-terminal regions. Subcellular localization predictions suggested that these proteins are localized in chloroplasts. SDS-PAGE analysis confirmed that the SlHSP21-1/2 fusion proteins were successfully expressed, predominantly as inclusion bodies. Following purification by Ni-NTA affinity chromatography, high-purity recombinant proteins were obtained, providing reliable antigens for immunization. Polyclonal antisera raised in New Zealand rabbits using the recombinant proteins specifically recognized the target protein bands in Western blot assays, demonstrating that the prepared antibodies possess strong specificity.
      Conclusion The SlHSP21-1/2 gene was successfully expressed in a prokaryotic system, and polyclonal antibody with good specificity was obtained.