Wang Xiuzhu, Zhou Dejian, Sinniah Kumar, Clarke Caroline, Birch Louise, Li Haitao, Rayment Trevor, Abell Chris
Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, UK.
Langmuir. 2006 Jan 31;22(3):887-92. doi: 10.1021/la0525731.
In this letter, we show that electrostatic immobilization provides a simple but effective approach for the immobilization and orientation of carbonic anhydrase onto charged surfaces. The enzyme is oriented differently on oppositely charged surfaces, with the majority of active sites facing upward on a positively charged surface and downward on a negatively charged surface. An array of negatively charged microscale surface patterns within a positively charged background was prepared by microcontact printing and used as the substrate to immobilize the enzymes. This enabled the probing of the enzyme orientations on the two differently charged surface regions by force spectroscopy with the same atomic force microscopy (AFM) probe modified with a thiolated sulfonamide inhibitor. The unbinding forces between the inhibitor tip and the enzyme immobilized on the two differently charged surfaces were measured. Two control experiments, blocking of the enzyme active site with a competitive inhibitor and removal of the zinc ion from the enzyme catalytic center, were employed to distinguish between specific and nonspecific interactions and to further verify the differences in enzyme orientation. Autocorrelation analysis of the force histograms was carried out to evaluate the specific single enzyme-inhibitor interaction force.
在这封信中,我们表明静电固定为碳酸酐酶在带电表面上的固定和定向提供了一种简单而有效的方法。该酶在带相反电荷的表面上定向不同,在带正电荷的表面上大多数活性位点向上,而在带负电荷的表面上向下。通过微接触印刷在带正电荷的背景内制备了一系列带负电荷的微尺度表面图案,并用作固定酶的底物。这使得能够使用用硫醇化磺酰胺抑制剂修饰的相同原子力显微镜(AFM)探针通过力谱法探测酶在两个带不同电荷的表面区域上的取向。测量了抑制剂尖端与固定在两个带不同电荷表面上的酶之间的解离力。采用两个对照实验,即用竞争性抑制剂阻断酶活性位点和从酶催化中心去除锌离子,以区分特异性和非特异性相互作用,并进一步验证酶取向的差异。对力直方图进行自相关分析以评估特异性单酶 - 抑制剂相互作用力。