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钠离子/氢 (+) 交换器 NHE5 在中枢和周围神经系统中被分拣到离散的细胞内小泡中。

The Na(+)/H (+) exchanger NHE5 is sorted to discrete intracellular vesicles in the central and peripheral nervous systems.

机构信息

Department of Physiology, McGill University, Montreal, QC, Canada.

出版信息

Adv Exp Med Biol. 2013;961:397-410. doi: 10.1007/978-1-4614-4756-6_34.

Abstract

The pH milieu of the central and peripheral nervous systems is an important determinant of neuronal excitability, function, and survival. In mammals, neural acid-base homeostasis is coordinately regulated by ion transporters belonging to the Na(+)/H(+) exchanger (NHE) and bicarbonate transporter gene families. However, the relative contributions of individual isoforms within the respective families are not fully understood. This report focuses on the NHE family, specifically the plasma membrane-type NHE5 which is preferentially transcribed in brain, but the distribution of the native protein has not been extensively characterized. To this end, we generated a rabbit polyclonal antibody that specifically recognizes NHE5. In both central (cortex, hippocampus) and peripheral (superior cervical ganglia, SCG) nervous tissue of mice, NHE5 immunostaining was punctate and highly concentrated in the somas and to lesser amounts in the dendrites of neurons. Very little signal was detected in axons. Similarly, in primary cultures of differentiated SCG neurons, NHE5 localized predominantly to vesicles in the somatodendritic compartment, though some immunostaining was also evident in punctate vesicles along the axons. NHE5 was also detected predominantly in intracellular vesicles of cultured SCG glial cells. Dual immunolabeling of SCG neurons showed that NHE5 did not colocalize with markers for early endosomes (EEA1) or synaptic vesicles (synaptophysin), but did partially colocalize with the transferrin receptor, a marker of recycling endosomes. Collectively, these data suggest that NHE5 partitions into a unique vesicular pool in neurons that shares some characteristics of recycling endosomes where it may serve as an important regulated store of functional transporters required to maintain cytoplasmic pH homeostasis.

摘要

中枢和周围神经系统的 pH 环境是神经元兴奋性、功能和存活的重要决定因素。在哺乳动物中,神经酸碱稳态通过属于 Na(+)/H(+)交换体 (NHE) 和碳酸氢盐转运体基因家族的离子转运体进行协调调节。然而,各个家族中个别同工型的相对贡献尚不完全清楚。本报告重点介绍 NHE 家族,特别是优先在大脑中转录的质膜型 NHE5,但天然蛋白的分布尚未得到广泛描述。为此,我们生成了一种特异性识别 NHE5 的兔多克隆抗体。在小鼠的中枢(皮质、海马体)和周围(颈上神经节,SCG)神经组织中,NHE5 免疫染色呈点状,高度集中在神经元的体部,在树突中则较少。在轴突中几乎检测不到信号。同样,在分化的 SCG 神经元的原代培养物中,NHE5 主要定位于体树突区的囊泡中,但在轴突中的点状囊泡中也可见到一些免疫染色。NHE5 也主要存在于培养的 SCG 神经胶质细胞的细胞内囊泡中。SCG 神经元的双重免疫标记显示,NHE5 与早期内体(EEA1)或突触小泡(突触小泡蛋白)的标志物不共定位,但与转铁蛋白受体部分共定位,转铁蛋白受体是再循环内体的标志物。综上所述,这些数据表明,NHE5 分配到神经元中的独特囊泡池中,该囊泡池与再循环内体具有一些共同特征,它可能作为维持细胞质 pH 稳态所需的功能性转运体的重要调节储存库。

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