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Biosynthesis and Characterization of Recombinant Silk-Like Polypeptides Derived from the Heavy Chain of Silk Fibrion

机译:真丝纤维重链衍生的重组真丝多肽的生物合成与表征

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摘要

In order to investigate the impacts on the structure and biomedical function of typical fragments derived from repetitive and non-repetitive regions of the Bombyx mori silk fibroin heavy chain, several block combination genes (gs16f1, gs16f4, gs16f8, and gs16f12) were designed, cloned into a fusion protein expression vector tagged with glutathione S-transferase (GST), and expressed in Escherichia coli. Fusion proteins GST-GS16F1, GST-GS16F4, and GST-GS16F8 were purified by GST affinity chromatography, and single bands were identified by SDS-PAGE. Under optimal initial cell density, in ducer concentration and induction expression time, the yield of purified GST-GS16F1, GST-GS16F4, and GST-GS16F8 per liter of bacterial culture reached 79, 53, and 28 mg, respectively. Mass spectrometry revealed molecular weights for GST-GS16F1, GST-GS16F4, and GST-GS16F8 of 37.7, 50.0, and 65.7 kDa, respectively, consistent with the theoretical values of 37.4, 49.4, and 65.5 kDa. Similarly, measured values of pI were 5.35, 4.5, and 4.2 for the fusion proteins, consistent with predicted values of 5.34, 4.44, and 4.09. CD spectra showed the molecular conformation of GS16F1 was mainly β-sheet structure, while more stable α-helix structure formed in GS16F4 and GS16F8.
机译:为了研究家蚕丝素蛋白重链重复区和非重复区对典型片段的结构和生物医学功能的影响,设计,克隆了几种嵌段组合基因(gs16f1,gs16f4,gs16f8和gs16f12)融合蛋白表达载体标记有谷胱甘肽S-转移酶(GST),并在大肠杆菌中表达。通过GST亲和层析纯化融合蛋白GST-GS16F1,GST-GS16F4和GST-GS16F8,并通过SDS-PAGE鉴定单条带。在最佳初始细胞密度下,在诱导剂浓度和诱导表达时间方面,每升细菌培养物的纯化GST-GS16F1,GST-GS16F4和GST-GS16F8的产量分别达到79、53和28 mg。质谱显示,GST-GS16F1,GST-GS16F4和GST-GS16F8的分子量分别为37.7、50.0和65.7 kDa,与理论值37.4、49.4和65.5 kDa一致。同样,融合蛋白的pI的测量值为5.35、4.5和4.2,与5.34、4.44和4.09的预测值一致。 CD光谱表明,GS16F1的分子构象主要为β-折叠结构,而在GS16F4和GS16F8中形成的α-螺旋结构更稳定。

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