首页> 美国卫生研究院文献>Applied and Environmental Microbiology >The secretion leader of Mucor pusillus rennin which possesses an artificial Lys-Arg sequence directs the secretion of mature human growth hormone by Saccharomyces cerevisiae.
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The secretion leader of Mucor pusillus rennin which possesses an artificial Lys-Arg sequence directs the secretion of mature human growth hormone by Saccharomyces cerevisiae.

机译:具有人工Lys-Arg序列的Mucor pusillus rennin的分泌前导分子通过酿酒酵母指导成熟的人生长激素的分泌。

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摘要

The prepro-peptide of fungal aspartic proteinase, Mucor pusillus rennin, is useful as a secretion leader for efficient secretion of human growth hormone (HGH) from Saccharomyces cerevisiae. For secretion by yeast cells of HGH with the same NH2 terminus as native HGH, an artificial Lys-Arg linker, which is one of the potential KEX2 recognition sequences, was introduced at the junction between the M. pusillus rennin secretion leader and mature HGH. The HGH directed by this construction was the same size as native HGH, as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and amino acid sequencing of its NH2 terminus revealed that the secretion leader peptide was removed correctly at the COOH-terminal side of the Lys-Arg linker. On the other hand, when the same plasmid was expressed in a kex2 mutant strain, unprocessed HGH of a higher molecular weight was secreted, indicating that no proteolytic cleavage at the Lys-Arg site occurred. These results clearly showed that the leader peptide with the Lys-Arg linker was recognized and specifically cleaved by the yeast KEX2 protease. The mature HGH purified from yeast culture medium was indistinguishable from native HGH in biological activity, determined by the adipocyte conversion assay, and in secondary structure, determined by circular dichroism spectroscopy.
机译:真菌天冬氨酸蛋白酶的前原肽,Mucor pusillus rennin,可用作酿酒酵母有效分泌人生长激素(HGH)的分泌先导。为了由具有与天然HGH相同的NH2末端的HGH的酵母细胞分泌,将人工Lys-Arg接头作为潜在的KEX2识别序列之一,引入到了脓毒杆菌肾素分泌前导子和成熟的HGH之间的交界处。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳确定,由该构建体指导的HGH与天然HGH的大小相同,并且其NH2末端的氨基酸测序表明,分泌前导肽已被正确去除。 Lys-Arg接头。另一方面,当相同的质粒在kex2突变株中表达时,分泌了未加工的较高分子量的HGH,表明在Lys-Arg位点未发生蛋白水解切割。这些结果清楚地表明,具有Lys-Arg接头的前导肽被酵母KEX2蛋白酶识别并特异性切割。从酵母培养基中纯化出的成熟HGH在生物活性和脂肪组织转化率方面均无法与天然HGH区别,而在二级结构中通过圆二色性光谱法则无法确定。

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