Simons G, van den Heuvel W, Reynen T, Frijters A, Rutten G, Slangen C J, Groenen M, de Vos W M, Siezen R J
Department of Biophysical Chemistry, Netherlands Institute for Dairy Research (NIZO), Ede, The Netherlands.
Protein Eng. 1993 Sep;6(7):763-70. doi: 10.1093/protein/6.7.763.
A cDNA clone containing the entire coding region for bovine beta-casein A3 flanked by 53 base pairs of 5' non-coding and 358 base pairs of 3' non-coding sequences was isolated from a bovine mammary cDNA phagemid library. The coding segment for mature beta-casein was subcloned into the T7 expression system, in which the expression of recombinant beta-casein was controlled by the T7 gene 10 promoter and ribosome binding site. High level expression of Met-beta-casein to approximately 20% of the total soluble proteins was obtained in Escherichia coli within 2 h after induction of T7 RNA-polymerase synthesis. In an attempt to induce secretion the coding segment for mature beta-casein was coupled to the ompA translational initiation signal and signal peptide coding sequence but no secretion of the fusion protein and no processing of the signal peptide from the fusion protein was observed. Instead, the Met-beta-casein could be isolated in a soluble form from E.coli cells after an osmotic shock, indicative of a periplasmic location. This procedure did not lyse the cells. The protein was purified to homogeneity after a pH 4.8 isoelectric precipitation followed by reversed-phase high-performance liquid chromatography. The beta-casein cDNA was altered to change the main chymosin cleavage site in beta-casein at position 192-193 in two ways, namely from Leu-Tyr to Pro-Pro and to Leu-stop.(ABSTRACT TRUNCATED AT 250 WORDS)
从牛乳腺cDNA噬菌粒文库中分离出一个cDNA克隆,其包含牛β-酪蛋白A3的完整编码区,两侧分别有53个碱基对的5'非编码序列和358个碱基对的3'非编码序列。成熟β-酪蛋白的编码片段被亚克隆到T7表达系统中,其中重组β-酪蛋白的表达由T7基因10启动子和核糖体结合位点控制。在诱导T7 RNA聚合酶合成后2小时内,在大肠杆菌中获得了高水平的甲硫氨酸-β-酪蛋白表达,其表达量约占总可溶性蛋白的20%。为了诱导分泌,将成熟β-酪蛋白的编码片段与ompA翻译起始信号和信号肽编码序列相连,但未观察到融合蛋白的分泌以及信号肽从融合蛋白上的加工。相反,在渗透休克后,甲硫氨酸-β-酪蛋白可以以可溶形式从大肠杆菌细胞中分离出来,这表明其位于周质中。此过程未裂解细胞。在pH 4.8等电沉淀后,再通过反相高效液相色谱法将该蛋白纯化至同质。通过两种方式改变β-酪蛋白cDNA,以改变β-酪蛋白在192-193位的主要凝乳酶切割位点,即将亮氨酸-酪氨酸变为脯氨酸-脯氨酸以及变为亮氨酸-终止密码子。(摘要截断于250字)