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短杆菌肽通道中电导异质性的诱导。

Induction of conductance heterogeneity in gramicidin channels.

作者信息

Sawyer D B, Koeppe R E, Andersen O S

机构信息

Department of Physiology and Biophysics, Cornell University Medical College, New York, New York 10021.

出版信息

Biochemistry. 1989 Aug 8;28(16):6571-83. doi: 10.1021/bi00442a007.

Abstract

In previous work from our laboratory, 5-10% of the channels formed by [Val1]gramicidin A have conductances that fall outside the narrow range that conventionally has defined the standard gramicidin channel [e.g., see Russell et al. (1986) Biophys. J. 49, 673]. Reports from other laboratories, however, show that up to 50% of [Val1]gramicidin channels have conductances that fall outside the range for standard channels [e.g., see Prasad et al. (1986) Biochemistry 25, 456]. This laboratory-to-laboratory variation in the distribution of gramicidin single-channel conductances suggests that the conductance variants are induced by some environmental factor(s) [Busath et al. (1987) Biophys. J. 51, 79]. In order to test whether extrinsic agents can induce such conductance heterogeneity, we examined the effects of nonionic or zwitterionic detergents upon gramicidin channel behavior. In phospholipid bilayers, detergent addition induces many changes in gramicidin channel behavior: all detergents tested increase the channel appearance rate and average duration; most detergents decrease the conductance of the standard channel; and all but one of the detergents increase the conductance heterogeneity. These results show that the conductance heterogeneity can result from environmental perturbations, thus providing a possible explanation for the laboratory-to-laboratory variation in the heterogeneity of gramicidin channels. In addition, the differential detergent effects suggest possible mechanisms by which detergents can induce the conformational perturbations that result in gramicidin single-channel conductance variations.

摘要

在我们实验室之前的工作中,由[Val1]短杆菌肽A形成的通道中有5 - 10%的通道电导落在传统上定义标准短杆菌肽通道的狭窄范围之外[例如,见Russell等人(1986年)《生物物理学杂志》49卷,673页]。然而,其他实验室的报告表明,高达50%的[Val1]短杆菌肽通道的电导落在标准通道范围之外[例如,见Prasad等人(1986年)《生物化学》25卷,456页]。短杆菌肽单通道电导分布在不同实验室之间的这种差异表明,电导变异体是由某些环境因素诱导产生的[Busath等人(1987年)《生物物理学杂志》51卷,79页]。为了测试外在因素是否能诱导这种电导异质性,我们研究了非离子或两性离子洗涤剂对短杆菌肽通道行为的影响。在磷脂双层中,添加洗涤剂会引起短杆菌肽通道行为的许多变化:所有测试的洗涤剂都会提高通道出现率和平均持续时间;大多数洗涤剂会降低标准通道的电导;除一种洗涤剂外,所有洗涤剂都会增加电导异质性。这些结果表明,电导异质性可能是由环境扰动引起的,从而为不同实验室间短杆菌肽通道异质性的差异提供了一种可能的解释。此外,洗涤剂的不同作用表明了洗涤剂诱导构象扰动从而导致短杆菌肽单通道电导变化的可能机制。

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