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通过类弹性蛋白多肽标签系统对果聚糖蔗糖酶进行异源表达及优化的一步分离

Heterologous expression and optimized one-step separation of levansucrase via elastin-like polypeptides tagging system.

作者信息

Kang Hye-Jin, Kim Jin-Hee, Chang Woo-Jin, Kim Eung-Soo, Koo Yoon-Mo

机构信息

Department of Biological Engineering, Inha University, Incheon 402-751, Korea.

出版信息

J Microbiol Biotechnol. 2007 Nov;17(11):1751-7.

Abstract

Elastin-like polypeptides (ELPs) undergo a reversible inverse phase transition upon a change in temperature. This thermally triggered phase transition allows for a simple and rapid means of purifying a fusion protein. Recovery of ELPs-tagged fusion protein was easily achieved by aggregation, triggered either by raising temperature or by adding salt. In this study, levansucrase has been used as a model enzyme in the development of a simple one-step purification method using ELPs. The levansucrase gene cloned from Pseudomonas aurantiaca S-4380 was tagged with various sizes of ELPs to functionally express and optimize the purification of levansucrase. One of two ELPs, ELP[V-20] or ELP[V-40], was fused at the C-terminus of the levansucrase gene. A levansucrase-ELP fusion protein was expressed in Escherichia coli DH5alpha at 37 degrees C for 18 h. The molecular masses of levansucrase-ELP[V-20] and levansucrase-ELP[V-40] were determined as 56 kDa and 65 kDa, respectively. The phase transition of levansucrase-ELP[V-20] occurred at 20 degrees C in 50 mM Tris-Cl (pH 8) buffer with 3 M NaCl added, whereas the phase transition temperature (Tt) of levansucrase-ELP[V-40] was 17 degrees C with 2 M NaCl. Levansucrase was successfully purified using the phase transition characteristics of ELPs, with a recovery yield of higher than 80%, as verified by SDS-PAGE. The specific activity was measured spectrophotometrically to be 173 U/mg and 171 U/mg for levansucrase-ELP[V-20] and levansucrase-ELP[V-40], respectively, implying that the ELP-tagging system provides an efficient one-step separation method for protein purification.

摘要

类弹性蛋白多肽(ELPs)在温度变化时会发生可逆的逆相变。这种热触发的相变提供了一种简单快速的融合蛋白纯化方法。通过升高温度或添加盐引发聚集,很容易实现ELPs标记的融合蛋白的回收。在本研究中,蔗糖转移酶被用作模型酶,以开发一种使用ELPs的简单一步纯化方法。从橙色假单胞菌S-4380克隆的蔗糖转移酶基因用不同大小的ELPs进行标记,以功能性表达并优化蔗糖转移酶的纯化。两种ELPs之一,ELP[V-20]或ELP[V-40],在蔗糖转移酶基因的C末端融合。蔗糖转移酶-ELP融合蛋白在大肠杆菌DH5α中于37℃表达18小时。蔗糖转移酶-ELP[V-20]和蔗糖转移酶-ELP[V-40]的分子量分别测定为56 kDa和65 kDa。蔗糖转移酶-ELP[V-20]在添加了3 M NaCl的50 mM Tris-Cl(pH 8)缓冲液中于20℃发生相变,而蔗糖转移酶-ELP[V-40]在添加2 M NaCl时的相变温度(Tt)为17℃。利用ELPs的相变特性成功纯化了蔗糖转移酶,SDS-PAGE验证回收率高于80%。通过分光光度法测定,蔗糖转移酶-ELP[V-20]和蔗糖转移酶-ELP[V-40]的比活性分别为173 U/mg和171 U/mg,这意味着ELP标记系统为蛋白质纯化提供了一种高效的一步分离方法。

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