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水通道蛋白Nt-TIPa可解释烟草细胞液泡膜对中性小分子溶质的高通透性。

Aquaporin Nt-TIPa can account for the high permeability of tobacco cell vacuolar membrane to small neutral solutes.

作者信息

Gerbeau P, Güçlü J, Ripoche P, Maurel C

机构信息

Institut des Sciences Végétales, CNRS, Gif-sur-Yvette, France.

出版信息

Plant J. 1999 Jun;18(6):577-87. doi: 10.1046/j.1365-313x.1999.00481.x.

Abstract

Members of the major intrinsic protein (MIP) family, described in plants as water-selective channels (aquaporins), can also transport small neutral solutes in other organisms. In the present work, we characterize the permeability of plant vacuolar membrane (tonoplast; TP) and plasma membrane (PM) to non-electrolytes and evaluate the contribution of MIP homologues to such transport. PM and TP vesicles were purified from tobacco suspension cells by free-flow electrophoresis, and membrane permeabilities for a wide range of neutral solutes including urea, polyols of different molecular size, and amino acids were investigated by stopped-flow spectrofluorimetry. For all solutes tested, TP vesicles were found to be more permeable than their PM counterparts, with for instance urea permeabilities from influx experiments of 74.9 +/- 9.6 x 10(-6) and 1.0 +/- 0.3 x 10(-6) cm sec-1, respectively. Glycerol and urea transport in TP vesicles exhibited features of a facilitated diffusion process. This and the high channel-mediated permeability of the same TP vesicles to water suggested a common role for MIP proteins in water and solute transport. A cDNA encoding a novel tonoplast intrinsic protein (TIP) homologue named Nicotiana tabacum TIPa (Nt-TIPa) was isolated from tobacco cells. Immunodetection of Nt-TIPa in purified membrane fractions confirmed that the protein is localized in the TP. Functional expression of Nt-TIPa in Xenopus oocytes showed this protein to be permeable to water and solutes such as urea and glycerol. These features could account for the transport selectivity profile determined in purified TP vesicles. These results support the idea that plant aquaporins have a dual function in water and solute transport. Because Nt-TIPa diverges in sequence from solute permeable aquaporins characterized in other organisms, its identification also provides a novel tool for investigating the molecular determinants of aquaporin transport selectivity.

摘要

主要内在蛋白(MIP)家族成员在植物中被描述为水选择性通道(水通道蛋白),在其他生物体中也能转运中性小分子溶质。在本研究中,我们对植物液泡膜(液泡质膜;TP)和质膜(PM)对非电解质的通透性进行了表征,并评估了MIP同源物对这种转运的贡献。通过自由流动电泳从烟草悬浮细胞中纯化了PM和TP囊泡,并采用停流荧光光谱法研究了包括尿素、不同分子大小的多元醇和氨基酸在内的多种中性溶质的膜通透性。对于所有测试的溶质,发现TP囊泡比其对应的PM囊泡更具通透性,例如,来自流入实验的尿素通透性分别为74.9±9.6×10⁻⁶和1.0±0.3×10⁻⁶ cm sec⁻¹。TP囊泡中甘油和尿素的转运表现出易化扩散过程的特征。这以及相同TP囊泡对水的高通道介导通透性表明MIP蛋白在水和溶质转运中具有共同作用。从烟草细胞中分离出了一个编码新型液泡膜内在蛋白(TIP)同源物的cDNA,命名为烟草TIPa(Nt-TIPa)。在纯化的膜组分中对Nt-TIPa进行免疫检测证实该蛋白定位于TP。Nt-TIPa在非洲爪蟾卵母细胞中的功能表达表明该蛋白对水以及尿素和甘油等溶质具有通透性。这些特征可以解释在纯化的TP囊泡中确定的转运选择性概况。这些结果支持了植物水通道蛋白在水和溶质转运中具有双重功能的观点。由于Nt-TIPa在序列上与其他生物体中表征的溶质通透水通道蛋白不同,其鉴定也为研究水通道蛋白转运选择性的分子决定因素提供了一种新工具。

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