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ATP 对泡囊藻游动孢子梗膜中渗透激活阴离子电流的调节作用。

ATP modulation of osmotically activated anionic current in the membrane of Phycomyces blakesleeanus sporangiophore.

机构信息

Faculty of Biology, Institute of Physiology and Biochemistry, University of Belgrade, Studentski Trg 16, Belgrade, 11158, Serbia.

Institute of Multidisciplinary Research, University of Belgrade, Kneza Višeslava 1, Belgrade, 11030, Serbia.

出版信息

Sci Rep. 2023 Jul 24;13(1):11897. doi: 10.1038/s41598-023-39021-9.

Abstract

Ion channels are vital components of filamentous fungi signaling in communication with their environment. We exploited the ability of the apical region of growing sporangiophores of Phycomyces blakesleeanus to form membrane-enveloped cytoplasmic droplets (CDs), to examine ion currents in the filamentous fungi native plasma membrane. In hypoosmotic conditions, the dominant current in the CDs is ORIC, an osmotically activated, anionic, outwardly rectified, fast inactivating instantaneous current that we have previously characterized. Here, we examined the effect of ATP on ORIC. We show that CDs contain active mitochondria, and that respiration inhibition by azide accelerates ORIC inactivation. ATP, added intracellularly, reduced ORIC run-down and shifted the voltage dependence of inactivation toward depolarized potentials, in a manner that did not require hydrolysis. Notably, ATP led to slowing down of ORIC inactivation, as evidenced by an increased time constant of inactivation, τ, and slower decline of τ during prolonged recordings. Flavonoids (genistein and quercetin) had the effect on ORIC opposite to ATP, acting as current inhibitors, possibly by disrupting the stabilizing effect of ATP on ORIC. The integration of osmotic sensing with ATP dependence of the anionic current, typical of vertebrate cells, is described here for the first time in filamentous fungi.

摘要

离子通道是丝状真菌与环境进行通讯的信号传导的重要组成部分。我们利用泡囊梗顶端区域形成膜包裹的细胞质液滴 (CDs) 的能力,来研究丝状真菌原生质膜中的离子电流。在低渗条件下,CDs 中的主要电流是 ORIC,这是一种受渗透压激活的阴离子外向整流瞬时电流,我们之前已经对其进行了表征。在这里,我们研究了 ATP 对 ORIC 的影响。我们表明,CDs 中含有活跃的线粒体,并且叠氮化钠抑制呼吸会加速 ORIC 的失活。添加到细胞内的 ATP 减少了 ORIC 的衰减,并将失活的电压依赖性向去极化电位转移,这种方式不需要水解。值得注意的是,ATP 导致 ORIC 失活的速度减慢,这表现在失活时间常数 τ 的增加,以及在长时间记录期间 τ 的下降速度减慢。类黄酮(染料木黄酮和槲皮素)对 ORIC 的作用与 ATP 相反,作为电流抑制剂,可能通过破坏 ATP 对 ORIC 的稳定作用来发挥作用。在这里,我们首次在丝状真菌中描述了渗透压感应与阴离子电流对 ATP 依赖性的整合,这种现象是典型的脊椎动物细胞的特征。

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