School of Electrical and Electronics Engineering, The University of Manchester, PO Box 88, Sackville Street Building, Sackville Street, Manchester, M60 1QD, UK.
J Chromatogr A. 2010 Dec 17;1217(51):8026-31. doi: 10.1016/j.chroma.2010.08.047. Epub 2010 Aug 24.
The foremost requirement of quantification of cellulases expressed in genetically modified sugarcane is an efficient sample clean-up. This work investigates the feasibility of isotachophoresis for this purpose. An electrolyte system comprising a leading electrolyte of 10mM formic acid at pH 9.0 and a terminating electrolyte of 10mM β-alanine was devised and used to perform isotachophoresis of cellulases. The use of a simple front cutting method removed a majority of interfering species in the juice, thereby resulting in the formation of a distinct zone of desired proteins. In comparison to techniques such as ultrafiltration and liming, the analysis time and loss of desired proteins was lower when the sample was prepared by using isotachophoresis. Hence, isotachophoresis was an ideal choice for purification of the proteins in question from the remaining components in the juice.
在遗传修饰甘蔗中表达的纤维素酶进行定量的最首要要求是有效的样品净化。本工作研究了等速电泳在这方面的可行性。设计了一种包含 10mM 甲酸(pH9.0)作为起始电解质和 10mM β-丙氨酸作为终止电解质的电解质系统,并用于纤维素酶的等速电泳。使用简单的前端切割方法去除了果汁中大多数干扰物质,从而形成了所需蛋白质的明显区域。与超滤和石灰处理等技术相比,当使用等速电泳制备样品时,分析时间和所需蛋白质的损失较低。因此,等速电泳是从果汁中的其他成分中纯化这些蛋白质的理想选择。