Boto R E F, Anyanwu U, Sousa F, Almeida P, Queiroz J A
Departamento de Química e Unidade de I & D de Materiais Têxteis e Papeleiros, Universidade da Beira Interior, Covilhã, Portugal.
Biomed Chromatogr. 2009 Sep;23(9):987-93. doi: 10.1002/bmc.1212.
A constant development of dye-affinity chromatography to replace more traditional techniques is verified, with the aim of increasing specificity in the purification of biomolecules. The establishment of a new dye-affinity chromatographic support imposes their complete characterization, namely with relation to the binding capacity for proteins, in order to evaluate its applicability on global purification processes. Following previous studies, the adsorption of lysozyme onto a thiacarbocyanine dye immobilized on beaded cellulose was investigated. The effect of different parameters, such as temperature, ionic strength, pH, protein concentration and flow rate, on the dynamic binding capacity of the support to retain lysozyme was also studied. Increasing the temperature and the lysozyme concentration had a positive effect on the dynamic binding capacity (DBC), whereas increasing the ionic strength and the flow rate resulted in the opposite. It was also discovered that the pH used had an important impact on the lysozyme binding onto the immobilized dye. The maximum DBC value obtained for lysozyme was 8.6 mg/mL, which was achieved at 30 degrees C and pH 9 with a protein concentration of 0.5 mg/mL and a flow rate of 0.05 mL/min. The dissociation constant (K(d)) obtained was 2.61 +/- 0.36 x 10(-5 )m, proving the affinity interaction between the thiacarbocyanine dye ligand and the lysozyme.
为提高生物分子纯化的特异性,染料亲和色谱法不断发展以取代更传统的技术。新型染料亲和色谱支持物的建立需要对其进行全面表征,特别是关于蛋白质结合能力的表征,以便评估其在整体纯化过程中的适用性。根据先前的研究,研究了溶菌酶在固定于珠状纤维素上的硫代碳菁染料上的吸附情况。还研究了温度、离子强度、pH值、蛋白质浓度和流速等不同参数对支持物保留溶菌酶的动态结合能力的影响。温度和溶菌酶浓度的增加对动态结合能力(DBC)有积极影响,而离子强度和流速的增加则产生相反的效果。还发现所用的pH值对溶菌酶与固定化染料的结合有重要影响。溶菌酶获得的最大DBC值为8.6 mg/mL,这是在30℃、pH 9、蛋白质浓度为0.5 mg/mL和流速为0.05 mL/min的条件下实现的。获得的解离常数(K(d))为2.61±0.36×10(-5) m,证明了硫代碳菁染料配体与溶菌酶之间的亲和相互作用。