Zhao Qitao, Jayawardhana Dilani A, Guan Xiyun
Department of Chemistry and Biochemistry, The University of Texas at Arlington, Arlington, Texas 76019-0065, USA.
Biophys J. 2008 Feb 15;94(4):1267-75. doi: 10.1529/biophysj.107.117598. Epub 2007 Nov 9.
Salt plays a critical role in the physiological activities of cells. We show that ionic strength significantly affects the kinetics of noncovalent interactions in protein channels, as observed in stochastic studies of the transfer of various analytes through pores of wild-type and mutant alpha-hemolysin proteins. As the ionic strength increased, the association rate constant of electrostatic interactions was accelerated, whereas those of both hydrophobic and aromatic interactions were retarded. Dramatic decreases in the dissociation rate constants, and thus increases in the overall reaction formation constants, were observed for all noncovalent interactions studied. The results suggest that with the increase of salt concentration, the streaming potentials for all the protein pores decrease, whereas the preferential selectivities of the pores for either cations or anions drop. Furthermore, results also show that the salt effect on the rate of association of analytes to a pore differs significantly depending on the nature of the noncovalent interactions occurring in the protein channel. In addition to providing new insights into the nature of analyte-protein pore interactions, the salt-dependence of noncovalent interactions in protein pores observed provides a useful means to greatly enhance the sensitivity of the nanopore, which may find useful application in stochastic sensing.
盐在细胞的生理活动中起着关键作用。我们发现,离子强度会显著影响蛋白质通道中非共价相互作用的动力学,这在对各种分析物通过野生型和突变型α-溶血素蛋白孔道转运的随机研究中得到了观察。随着离子强度的增加,静电相互作用的缔合速率常数加快,而疏水相互作用和芳香族相互作用的缔合速率常数则减慢。对于所有研究的非共价相互作用,均观察到解离速率常数显著降低,从而导致总反应形成常数增加。结果表明,随着盐浓度的增加,所有蛋白质孔道的流动电位降低,而孔道对阳离子或阴离子的优先选择性下降。此外,结果还表明,盐对分析物与孔道缔合速率的影响因蛋白质通道中发生的非共价相互作用的性质而异。除了为分析物-蛋白质孔道相互作用的本质提供新的见解外,观察到的蛋白质孔道中非共价相互作用的盐依赖性提供了一种有效手段,可大大提高纳米孔的灵敏度,这可能在随机传感中找到有用的应用。