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跨电穿孔细胞膜的选择性和不对称分子转运。

Selective and asymmetric molecular transport across electroporated cell membranes.

作者信息

Tekle E, Astumian R D, Chock P B

机构信息

Section on Metabolic Regulation, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD 20892.

出版信息

Proc Natl Acad Sci U S A. 1994 Nov 22;91(24):11512-6. doi: 10.1073/pnas.91.24.11512.

Abstract

Transport of a divalent cation (Ca2+) and three DNA indicators [ethidium bromide (EB), propidium iodide (PI), and ethidium homodimer (EthD-1)] across electroporated membranes of several mammalian cell lines was found to be selective and asymmetrical. In low salt medium, Ca2+ and EB were preferentially transported across the anodefacing cell membrane while PI and EthD-1 predominately entered at the site facing the cathode. In high salt medium, the entry site for Ca2+ and EB was reversed to the cathode-facing hemisphere while it remained unchanged for PI and EthD-1. In all these experiments, the observed transport patterns remained unaffected whether the dyes (or ion) were present during or added after the electroporating pulse. The data suggest that asymmetric pores are created on both sides of the membrane facing the electrodes, with smaller pore size (but greater in number) on the anode side and larger pores (with a lower population) on the cathode side. Furthermore, the rate of resealing of the membrane pores is significantly enhanced in high ionic strength medium, thus affecting the entry site. The asymmetric transport pattern is neither caused by electrophoresis induced by the externally applied electric field nor due to one-sided membrane breakdown as previously believed.

摘要

研究发现,二价阳离子(Ca2+)和三种DNA指示剂[溴化乙锭(EB)、碘化丙啶(PI)和乙锭同二聚体(EthD-1)]跨多种哺乳动物细胞系的电穿孔膜转运具有选择性和不对称性。在低盐培养基中,Ca2+和EB优先跨面向阳极的细胞膜转运,而PI和EthD-1主要在面向阴极的部位进入细胞。在高盐培养基中,Ca2+和EB的进入部位反转至面向阴极的半球,而PI和EthD-1的进入部位保持不变。在所有这些实验中,无论染料(或离子)是在电穿孔脉冲期间存在还是在脉冲后添加,观察到的转运模式均不受影响。数据表明,在面向电极的膜两侧形成了不对称孔,阳极侧的孔径较小(但数量较多),阴极侧的孔径较大(数量较少)。此外,在高离子强度培养基中,膜孔的重新封闭速率显著提高,从而影响进入部位。这种不对称转运模式既不是由外部施加电场诱导的电泳引起的,也不是如先前认为的那样由于单侧膜破裂所致。

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