Trabbic-Carlson K, Meyer D E, Liu L, Piervincenzi R, Nath N, LaBean T, Chilkoti A
Department of Biomedical Engineering, Duke University, Durham, NC 27708, USA.
Protein Eng Des Sel. 2004 Jan;17(1):57-66. doi: 10.1093/protein/gzh006.
The limited throughput, scalability and high cost of protein purification by chromatography provide motivation for the development of non-chromatographic protein purification technologies that are cheaper and easier to implement in a high-throughput format for proteomics applications and to scale up for industrial bioprocessing. We have shown that genetic fusion of a recombinant protein to an elastin-like polypeptide (ELP) imparts the environmentally sensitive solubility property of the ELP to the fusion protein, and thereby allows selective separation of the fusion protein from Escherichia coli lysate by aggregation above a critical temperature (T(t)). Further development of ELP fusion proteins as widely applicable purification tools necessitates a quantitative understanding of how fused proteins perturb the ELP T(t) such that purification conditions (T(t)) may be predicted a priori for new recombinant proteins. We report here the effect that fusing six different proteins has on the T(t) of an ELP. A negative correlation between T(t) and the fraction hydrophobic surface area on the fused proteins was observed, which was determined from computer modeling of the available three-dimensional structure. The thermally triggered aggregation behavior of ELP-coated, functionalized gold colloids as well as ligand binding to the tendamistat-ELP fusion protein support the hypothesis that hydrophobic surfaces in molecular proximity to ELPs depress the ELP T(t) by a mechanism analogous to hydrophobic residue substitution in the ELP repeat, Val-Pro-Gly-Xaa-Gly.
通过色谱法进行蛋白质纯化时,其通量有限、可扩展性差且成本高昂,这促使人们开发非色谱蛋白质纯化技术。这类技术成本更低,更易于以高通量形式应用于蛋白质组学,也便于扩大规模用于工业生物加工。我们已经证明,重组蛋白与类弹性蛋白多肽(ELP)的基因融合赋予了融合蛋白ELP的环境敏感溶解性,从而能够通过在临界温度(T(t))以上聚集,从大肠杆菌裂解物中选择性分离融合蛋白。要将ELP融合蛋白进一步开发为广泛适用的纯化工具,就需要定量了解融合蛋白如何影响ELP的T(t),以便能够事先预测新重组蛋白的纯化条件(T(t))。我们在此报告六种不同蛋白与ELP融合对T(t)的影响。通过对可用三维结构进行计算机建模确定,观察到T(t)与融合蛋白上疏水表面积分数之间呈负相关。ELP包被的功能化金胶体的热触发聚集行为以及配体与腱糖淀粉酶 - ELP融合蛋白的结合,支持了这样一种假说:分子上靠近ELP的疏水表面通过类似于ELP重复序列Val - Pro - Gly - Xaa - Gly中疏水残基取代的机制,降低了ELP的T(t)。