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鳐鱼连接蛋白35的功能特性,连接蛋白γ亚家族的一个成员,在脊椎动物视网膜中表达。

Functional characteristics of skate connexin35, a member of the gamma subfamily of connexins expressed in the vertebrate retina.

作者信息

White T W, Deans M R, O'Brien J, Al-Ubaidi M R, Goodenough D A, Ripps H, Bruzzone R

机构信息

Department of Cell Biology, Harvard Medical School, Boston 02115, USA.

出版信息

Eur J Neurosci. 1999 Jun;11(6):1883-90. doi: 10.1046/j.1460-9568.1999.00607.x.

Abstract

Retinal neurons are coupled by electrical synapses that have been studied extensively in situ and in isolated cell pairs. Although many unique gating properties have been identified, the connexin composition of retinal gap junctions is not well defined. We have functionally characterized connexin35 (Cx35), a recently cloned connexin belonging to the gamma subgroup expressed in the skate retina, and compared its biophysical properties with those obtained from electrically coupled retinal cells. Injection of Cx35 RNA into pairs of Xenopus oocytes induced intercellular conductances that were voltage-gated at transjunctional potentials >/= 60 mV, and that were also closed by intracellular acidification. In contrast, Cx35 was unable to functionally interact with rodent connexins from the alpha or beta subfamilies. Voltage-activated hemichannel currents were also observed in single oocytes expressing Cx35, and superfusing these oocytes with medium containing 100 microm quinine resulted in a 1.8-fold increase in the magnitude of the outward currents, but did not change the threshold of voltage activation (membrane potential = +20 mV). Cx35 intercellular channels between paired oocytes were insensitive to quinine treatment. Both hemichannel activity and its modulation by quinine were seen previously in recordings from isolated skate horizontal cells. Voltage-activated currents of Cx46 hemichannels were also enhanced 1. 6-fold following quinine treatment, whereas Cx43-injected oocytes showed no hemichannel activity in the presence, or absence, of quinine. Although the cellular localization of Cx35 is unknown, the functional characteristics of Cx35 in Xenopus oocytes are consistent with the hemichannel and intercellular channel properties of skate horizontal cells.

摘要

视网膜神经元通过电突触相互连接,这种电突触已在原位和分离的细胞对中得到广泛研究。尽管已确定了许多独特的门控特性,但视网膜缝隙连接的连接蛋白组成仍未明确界定。我们对连接蛋白35(Cx35)进行了功能表征,Cx35是最近克隆的一种连接蛋白,属于在鳐鱼视网膜中表达的γ亚组,并将其生物物理特性与从电耦合视网膜细胞获得的特性进行了比较。将Cx35 RNA注射到非洲爪蟾卵母细胞对中可诱导细胞间电导,该电导在跨结电位≥60 mV时为电压门控,并且也会因细胞内酸化而关闭。相比之下,Cx35无法与来自α或β亚家族的啮齿动物连接蛋白进行功能相互作用。在表达Cx35的单个卵母细胞中也观察到了电压激活的半通道电流,用含有100微摩尔奎宁的培养基灌注这些卵母细胞会导致外向电流幅度增加1.8倍,但不会改变电压激活阈值(膜电位= +20 mV)。配对卵母细胞之间的Cx35细胞间通道对奎宁处理不敏感。半通道活性及其对奎宁的调节先前在分离的鳐鱼水平细胞记录中也有观察到。奎宁处理后,Cx46半通道的电压激活电流也增强了1.6倍,而注射Cx43的卵母细胞在有或没有奎宁的情况下均未显示半通道活性。尽管Cx35的细胞定位尚不清楚,但Cx35在非洲爪蟾卵母细胞中的功能特性与鳐鱼水平细胞的半通道和细胞间通道特性一致。

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