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非洲爪蟾卵母细胞中被细胞外钙失活的膜电导的离子选择性。

The ion selectivity of a membrane conductance inactivated by extracellular calcium in Xenopus oocytes.

作者信息

Zhang Y, McBride D W, Hamill O P

机构信息

Physiology and Biophysics, University of Texas Medical Branch, Galveston, TX 77555-0641, USA.

出版信息

J Physiol. 1998 May 1;508 ( Pt 3)(Pt 3):763-76. doi: 10.1111/j.1469-7793.1998.763bp.x.

Abstract
  1. The ion selectivity of a membrane ion conductance that is inactivated by extracellular calcium (Ca2+o) in Xenopus oocytes has been studied using the voltage-clamp technique. 2. The reversal potential of the Ca2+o-sensitive current (Ic) was measured using voltage ramps (-80 to +40 mV) as a function of the external concentration (12-240 mM) of NaCl or KCl. The direction and amplitude of the shifts in reversal potentials are consistent with permeability ratios of 1:0.99:0.24 for K+:Na+:Cl-. 3. Current-voltage (I-V ) relations of Ic, determined during either voltage ramps of 0.5 s duration or at steady state, displayed pronounced rectification at both hyperpolarized and depolarized potentials. However, instantaneous I-V relations showed less rectification and could be fitted by the constant field equation assuming the above K+:Na+:Cl- permeability ratios. 4. Ion substitution experiments indicated that relatively large organic monovalent cations and anions are permeant through Ic channels with the permeability ratios K+:NMDG+:TEA+:TPA+:TBA+:Gluc- = 1:0.45:0. 35:0.2:0.2:0.2. 5. External amiloride (200 microM), gentamicin (220 microM), flufenamic acid (40 microM), niflumic acid (100 microM), Gd3+ (0.3 microM) or Ca2+ (200 microM) caused reversible block of Ic without changing its reversal potential. 6. Preinjection of oocytes with antisense oligonucleotide against connexin 38, the Xenopus hemi-gap-junctional protein, inhibited Ic by 80 % without affecting its ion selectivity, thus confirming and extending the recent suggestion of Ebihara that Ic represents current carried through hemi-gap-junctional channels. 7. In vitro and in vivo maturation of oocytes resulted in a significant decrease in Ic conductance to 7 % and 2 % of control values, respectively. This developmental downregulation of Ic minimizes any toxic effect Ic activation would have when the mature egg is released into Ca2+o-free pond water. 8. The results of this study are discussed in relation to other Ca2+o-inactivated conductances seen in a wide variety of cell types and which have previously been interpreted as arising either from Ca2+o-masked channels or from changes in the ion selectivity of voltage-gated Ca2+ or K+ channels.
摘要
  1. 利用电压钳技术研究了非洲爪蟾卵母细胞中被细胞外钙(Ca2+o)灭活的膜离子电导的离子选择性。2. 使用电压斜坡(-80至+40 mV)测量Ca2+o敏感电流(Ic)的反转电位,该电位是NaCl或KCl外部浓度(12 - 240 mM)的函数。反转电位的变化方向和幅度与K+:Na+:Cl-的渗透率比1:0.99:0.24一致。3. 在持续0.5 s的电压斜坡期间或稳态下测定的Ic的电流-电压(I-V)关系在超极化和去极化电位下均表现出明显的整流作用。然而,瞬时I-V关系显示出较小的整流作用,并且可以通过假设上述K+:Na+:Cl-渗透率比的恒定场方程进行拟合。4. 离子替代实验表明,相对较大的有机单价阳离子和阴离子可透过Ic通道,渗透率比为K+:NMDG+:TEA+:TPA+:TBA+:Gluc- = 1:0.45:0.35:0.2:0.2:0.2。5. 外部氨氯地平(200 microM)、庆大霉素(220 microM)、氟芬那酸(40 microM)、尼氟灭酸(100 microM)、Gd3+(0.3 microM)或Ca2+(200 microM)可导致Ic的可逆阻断,而不改变其反转电位。6. 用针对非洲爪蟾半缝隙连接蛋白连接蛋白38的反义寡核苷酸预注射卵母细胞,可使Ic抑制80%,而不影响其离子选择性,从而证实并扩展了Ebihara最近的观点,即Ic代表通过半缝隙连接通道传导的电流。7. 卵母细胞的体外和体内成熟导致Ic电导分别显著降低至对照值的7%和2%。Ic的这种发育性下调将成熟卵释放到无Ca2+o的池塘水中时Ic激活可能产生的任何毒性作用降至最低。8. 本研究结果与在多种细胞类型中观察到的其他Ca2+o灭活电导相关进行了讨论,这些电导以前被解释为要么来自Ca2+o掩盖的通道,要么来自电压门控Ca2+或K+通道的离子选择性变化。

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