首页> 外文期刊>American Journal of Physiology >Biophysical characterization of zebrafish connexin35 hemichannels.
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Biophysical characterization of zebrafish connexin35 hemichannels.

机译:斑马鱼Connexin35血管瘤的生物物理特征。

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摘要

A subset of connexins can form unopposed hemichannels in expression systems, providing an opportunity for comparison of hemichannel gating properties with those of intact gap junction channels. Zebrafish connexin35 (Cx35) is a member of the Cx35/Cx36 subgroup of connexins highly expressed in the retina and brain. In the present study, we have shown that Cx35 expression in Xenopus oocytes and N2A cells produced large outward whole cell currents on cell depolarization. Using whole cell, cell-attached, and excised patch configurations, we obtained multichannel and single-channel current recordings attributable to the Cx35 hemichannels (I(hc)) that were activated and increased by stepwise depolarization of membrane potential (V(m)) and deactivated by hyperpolarization. The currents were not detected in untransfected N2A cells or in control oocytes injected with antisense Cx38. However, water-injected oocytes that were not treated with antisense showed activities attributable to Cx38 hemichannels that were easily distinguishable from Cx35 hemichannels by a significantly larger unitary conductance (gamma(hc): 250-320 pS). The gamma(hc) of Cx35 hemichannels exhibited a pronounced V(m) dependence; i.e., gamma(hc) increased/decreased with relative hyperpolarization/depolarization (gamma(hc) was 72 pS at V(m) = -100 mV and 35 pS at V(m) = 100 mV). Extrapolation to V(m) = 0 mV predicted a gamma(hc) of 48 pS, suggesting a unitary conductance of intact Cx35 gap junction channels of approximately 24 pS. Channel gating was also V(m) dependent: open time declined with negative V(m) and increased with positive V(m). The ability to break down the complex gating of intact intercellular channels into component hemichannels in vitro will help to evaluate putative physiological roles for hemichannels in vivo.
机译:Connexins的子集可以在表达系统中形成未嵌起的血管箱,为具有完整间隙结通道的血管通道门控性能进行比较。斑马鱼Connexin35(CX35)是Connexins的CX35 / CX36子组的成员,其在视网膜和大脑中高度表达。在本研究中,我们已经表明,卵宫卵母细胞和N2A细胞中的CX35表达在细胞去极化上产生了大的外部细胞电流。使用整个细胞,电池附着和切除的贴剂配置,我们获得了可归因于CX35血管链(I(HC))的多通道和单通道电流记录,其通过跨越膜电位的逐步去极化而被激活和增加(V(M))通过超极化取消激活。未在未转染的N2A细胞中检测到电流,或者在注射反义CX38的对照卵母细胞中。然而,未用反义治疗的水注入的卵母细胞,其可归因于CX38血小基鸟类的活动,其通过显着更大的单一导电(γ(HC):250-320 PS)可以容易地与CX35血管内分开。 CX35 Hemichannels的γ(HC)表现出明显的V(m)依赖性;即,γ(HC)随相对超极化/去极化(γ(HC)在V(m)= -100mV和35 ps下的γ(HC)为72 ps,在V(m)= 100mV)。外推至V(m)= 0 mV预测48 ps的γ(hc),表明完整的CX35间隙结通道的整体电导率约为24ps。沟道门也是v(m)依赖性:开放时间随阴性V(m)而下降,并用阳性V(m)增加。将完整的细胞间通道的复杂浇注分解成组分血管内的复杂浇注的能力将有助于评估体内血管内的推定的生理作用。

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