Jung Minjae, Park Yunjin, Ahn Yeh-Jin
Department of Biotechnology, Sangmyung University, 20 Hongjimun 2-gil, Jongno-gu, Seoul 03016, Korea.
Iran J Biotechnol. 2024 Jul 1;22(3):e3878. doi: 10.30498/ijb.2024.442517.3878. eCollection 2024 Jul.
Recombinant proteins produced in the cell factories are used in biological research, pharmaceutical production, and biochemical and agricultural applications. Molecular chaperones, such as heat shock proteins (Hsps), are co-expressed with recombinant proteins to enhance their yield, stability, and activity. When () is used as a cell factory, Hsps are the frequently used co-expression partners.
We examined if there are differences in the molecular chaperone activities of plant and bacterial Hsps on recombinant protein activity. We compared the effects of the Hsps from carrot () and on enhancing the recombinant alcohol dehydrogenase (ADH) activity and solubility under normal and heat conditions .
His-tagged carrot Hsps (DcHsp17.7 and DcHsp70), Hsps (IbpA, IbpB, and DnaK), and ADH from a thermophile were individually cloned in a pET11a or a pET26b vector, introduced into BL21(DE3), and expressed by isopropyl β-D-1-thiogalactopyranoside treatment (0.5 mM, 16 °C , 20 h). The recombinant proteins were purified using Ni-NTA affinity chromatography and resolved in SDS-PAGE (17%). The recombinant ADH was treated with the individual Hsps or in combination, and the enzyme activity was examined by measuring the NADH product levels at O.D..
The recombinant ADH was expressed at high levels in and very thermotolerant when the purified enzyme reacted (up to 70 °C). All five Hsps enhanced the ADH activity under normal and heat conditions , compared to the control. DcHsp17.7 and DcHsp70 were the most effective for improving the enzyme activity by up to 13.0- and 11.6-fold, respectively, followed by IbpA (8.4-fold), DnaK (6.5-fold), and IbpB (3.4-fold), at 37 °C . Combined incubation of DcHsp17.7-DcHsp70 and DcHsp17.7-DnaK further enhanced the ADH activity by 13.8 and 14.2-fold, respectively. DcHsp70 effectively enhanced ADH's solubility at 37 °C .
Our results suggest that plant Hsps can enhance recombinant protein activity, such as ADH, more effectively than their bacterial counterparts. Identifying effective molecular chaperones in the bacterial and eukaryotic domains will help enhance the production of recombinant proteins in .
细胞工厂生产的重组蛋白用于生物学研究、药物生产以及生化和农业应用。分子伴侣,如热休克蛋白(Hsps),与重组蛋白共表达以提高其产量、稳定性和活性。当()用作细胞工厂时,Hsps是常用的共表达伙伴。
我们研究了植物和细菌Hsps对重组蛋白活性的分子伴侣活性是否存在差异。我们比较了胡萝卜()和的Hsps在正常和热条件下对增强重组乙醇脱氢酶(ADH)活性和溶解度的影响。
将带有His标签的胡萝卜Hsps(DcHsp17.7和DcHsp70)、Hsps(IbpA、IbpB和DnaK)以及嗜热菌的ADH分别克隆到pET11a或pET26b载体中,导入BL21(DE3),并通过异丙基β-D-1-硫代半乳糖苷处理(0.5 mM,16°C,20 h)进行表达。重组蛋白用Ni-NTA亲和层析纯化,并在SDS-PAGE(17%)中进行分离。重组ADH分别用单个Hsps或组合处理,通过在光密度下测量NADH产物水平来检测酶活性。
重组ADH在中高水平表达,纯化后的酶在高达70°C反应时具有很强的耐热性。与对照相比,所有五种Hsps在正常和热条件下均增强了ADH活性。在37°C时,DcHsp17.7和DcHsp70对提高酶活性最有效,分别高达13.0倍和11.6倍,其次是IbpA(8.4倍)、DnaK(6.5倍)和IbpB(3.4倍)。DcHsp17.7-DcHsp70和DcHsp17.7-DnaK的联合孵育分别使ADH活性进一步提高了13.8倍和14.2倍。DcHsp70在37°C时有效提高了ADH的溶解度。
我们的结果表明,植物Hsps比细菌Hsps能更有效地增强重组蛋白如ADH的活性。在细菌和真核领域鉴定有效的分子伴侣将有助于提高()中重组蛋白的产量。