Kang Hye-Jin, Kim Jin-Hee, Chang Woo-Jin, Kim Eung-Soo, Koo Yoon-Mo
Department of Biological Engineering, Inha University, Incheon 402-751, Korea.
J Microbiol Biotechnol. 2007 Nov;17(11):1751-7.
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.
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。