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首页> 外文期刊>Protein Engineering >Enhanced proliferative effects of a baculovirus-produced fusion protein of insulin-like growth factor and alpha(1)-proteinase inhibitor and improved anti-elastase activity of the inhibitor with glutamate at position 351.
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Enhanced proliferative effects of a baculovirus-produced fusion protein of insulin-like growth factor and alpha(1)-proteinase inhibitor and improved anti-elastase activity of the inhibitor with glutamate at position 351.

机译:杆状病毒产生的胰岛素样生长因子和α(1)-蛋白酶抑制剂融合蛋白​​的增殖作用增强,并在351位具有谷氨酸的抑制剂增强了其抗弹性蛋白酶活性。

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摘要

alpha(1)-Proteinase inhibitor (API) was coupled at the C-terminus of a human insulin-like growth factor (IGF) analog to facilitate its production in insect cells. This fusion protein significantly increased thymidine incorporation into HL-60 cells as compared with the incorporation observed with an equivalent molar mixture of the IGF analog and API. The M351E variant of API has been previously shown to reduce aggregate formation in prokaryotic expression systems. When the oxidation-sensitive methionine 351 of the inhibitor was changed to glutamate, the M351E variant was secreted in larger amounts from insect cells than the corresponding fusion protein with wild-type API. The M351E fusion protein and the corresponding chimera containing the wild-type API were tested for their capacity to inhibit human neutrophil elastase. The M351E variant was a more potent elastase inhibitor than the fusion protein containing the wild-type analog, whereas the proliferative activity of both chimeras was identical. The described mitogenic effect of the chimera and the improved anti-elastase activity of the M351E variant are two ideal properties for therapeutic agents acting in pathological situations where cell proliferation and inhibition of neutrophil elastase have to take place simultaneously, such as during wound healing.
机译:alpha(1)-蛋白酶抑制剂(API)在人胰岛素样生长因子(IGF)类似物的C末端偶联,以促进其在昆虫细胞中的产生。与在IGF类似物和API的等摩尔混合物中观察到的掺入相比,该融合蛋白显着增加了胸苷掺入HL-60细胞。先前已显示API的M351E变体可减少原核表达系统中的聚集体形成。当抑制剂的对氧化敏感的蛋氨酸351变为谷氨酸时,与相应的具有野生型API的融合蛋白相比,昆虫细胞分泌的M351E变体量更大。测试了M351E融合蛋白和相应的含有野生型API的嵌合体抑制人嗜中性粒细胞弹性蛋白酶的能力。与含有野生型类似物的融合蛋白相比,M351E变体是一种更有效的弹性蛋白酶抑制剂,而两种嵌合体的增殖活性是相同的。所述的嵌合体的促有丝分裂作用和M351E变体的改进的抗弹性蛋白酶活性是治疗剂在病理情况下的两个理想特性,在这些情况下细胞增殖和中性粒细胞弹性蛋白酶的抑制必须同时发生,例如在伤口愈合期间。

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