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首页> 外文期刊>The Journal of Membrane Biology >The Activation Pathway of the Volume-Sensitive Organic Osmolyte Channel in Xenopus laevis Oocytes Expressing Skate Anion Exchanger 1 (AE1)
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The Activation Pathway of the Volume-Sensitive Organic Osmolyte Channel in Xenopus laevis Oocytes Expressing Skate Anion Exchanger 1 (AE1)

机译:爪蟾表达溜冰阴离子交换剂1(AE1)的卵母细胞中的体积敏感有机渗透通道的激活途径。

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摘要

When swollen, skate red blood cells increase permeability and allow efflux of a number of solutes, including taurine. Hypoosmosis-induced taurine permeability appears to involve the red cell anion exchanger. However, three isoforms have been cloned from these cells. Therefore, to determine the ability of the individual isoform skate anion exchanger 1 (skAE1) to mediate hypoosmosis-induced taurine permeability as well as associated regulatory events, skAE1 was expressed in Xenopus oocytes. This study focused on investigating the role of tyrosine kinases and lipid rafts in the regulation of the channel. The results showed that tyrosine kinase inhibitors and lipid raft-disrupting agents inhibited the volume-sensitive organic osmolyte channel while protein tyrosine phosphatase inhibitors activated the channel in oocytes expressing skAE1. To study the role of lipid rafts in the activation of the volume-sensitive organic osmolyte channel, the cellular localization of skAE1 was investigated. Also, the role of tyrosine kinases was investigated by examining the tyrosine phosphorylation state of skAE1. Hypoosmotic stress induced mobilization of skAE1 into light membranes and the cell surface as well as tyrosine phosphorylation of skAE1. These events are involved in the activation of the volume-sensitive organic osmolyte channel in Xenopus oocytes expressing skAE1.
机译:肿胀时,滑溜的红血球增加通透性并允许包括牛磺酸在内的许多溶质流出。低渗诱导的牛磺酸渗透性似乎与红细胞阴离子交换剂有关。但是,已经从这些细胞中克隆了三种同工型。因此,为了确定单个同工型滑冰阴离子交换剂1(skAE1)介导低渗诱导的牛磺酸渗透性以及相关调控事件的能力,在非洲爪蟾卵母细胞中表达了skAE1。这项研究的重点是研究酪氨酸激酶和脂质筏在通道调节中的作用。结果表明,酪氨酸激酶抑制剂和脂质筏干扰剂抑制了体积敏感的有机渗透液通道,而蛋白酪氨酸磷酸酶抑制剂激活了表达skAE1的卵母细胞通道。为了研究脂质筏在体积敏感的有机渗透液通道激活中的作用,研究了skAE1的细胞定位。此外,通过检查skAE1的酪氨酸磷酸化状态,研究了酪氨酸激酶的作用。低渗胁迫诱导skAE1动员到轻膜和细胞表面以及skAE1的酪氨酸磷酸化。这些事件涉及表达skAE1的非洲爪蟾卵母细胞中体积敏感的有机渗透压通道的激活。

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