Williamson P T, Roth J F, Haddingham T, Watts A
Biomembrane Structure Unit, Biochemistry Department, University of Oxford, South Parks Road, Oxford, OX1 3QU, United Kingdom.
Protein Expr Purif. 2000 Jul;19(2):271-5. doi: 10.1006/prep.2000.1246.
An expression system has been designed for the rapid and economic expression of recombinant neurotensin for biophysical studies. A synthetic gene for neurotensin (Glu(1)-Leu(2)-Tyr(3)-Glu(4)-Asn(5)-Lys(6)-Pro(7)-Arg(8)-Arg(9)-Pro(1 0)-Tyr(11)-Ile(12)-Leu(13)) was cloned into the pGEX-5X-2 vector to allow expression of neurotensin as a glutathione S-transferase (GST) fusion protein. The inclusion of a methionine residue between the glutathione S-transferase and the neurotensin has facilitated the rapid cleavage of the neurotensin from its carrier protein. Purification of recombinant neurotensin was performed by reverse-phase HPLC. This method produced a relatively high yield of peptide and offers the potential for economic partial or uniform labeling of small peptides (<15 amino acids) with isotopes for NMR or other biophysical techniques.
已设计出一种表达系统,用于快速且经济地表达重组神经降压素,以进行生物物理研究。将神经降压素(Glu(1)-Leu(2)-Tyr(3)-Glu(4)-Asn(5)-Lys(6)-Pro(7)-Arg(8)-Arg(9)-Pro(10)-Tyr(11)-Ile(12)-Leu(13))的合成基因克隆到pGEX-5X-2载体中,使神经降压素作为谷胱甘肽S-转移酶(GST)融合蛋白表达。在谷胱甘肽S-转移酶和神经降压素之间包含一个甲硫氨酸残基,有助于从其载体蛋白上快速切割神经降压素。重组神经降压素通过反相高效液相色谱法进行纯化。该方法产生了相对较高产量的肽,并为使用同位素对小肽(<15个氨基酸)进行经济的部分或均匀标记以用于核磁共振或其他生物物理技术提供了可能性。