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PIP1 aquaporins: Intrinsic water channels or PIP2 aquaporin modulators?

机译:PIP1水通道蛋白:内在的水通道还是PIP2水通道蛋白调节剂?

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摘要

The highly conserved plant aquaporins, known as Plasma membrane Intrinsic Proteins (PIPs), are the main gateways for cell membrane water exchange. Years of research have described in detail the properties of the PIP2 subfamily. However, characterizing the PIP1 subfamily has been difficult due to the failure to localize to the plasma membrane. In addition, the discovery of the PIP1-PIP2 interaction suggested that PIP1 aquaporins could be regulated by a complex posttranslational mechanism that involves trafficking, heteromerization and fine-tuning of channel activity. This review not only considers the evidence and findings but also discusses the complexity of PIP aquaporins. To establish a new benchmark in PIP regulation, we propose to consider PIP1-PIP2 pairs as functional units for the purpose of future research into their physiological roles. (C) 2015 Federation of European Biochemical Societies. Published by Elsevier B. V. All rights reserved.
机译:高度保守的植物水通道蛋白,称为质膜内在蛋白(PIP),是细胞膜水交换的主要途径。多年的研究已经详细描述了PIP2亚家族的特性。然而,由于不能定位于质膜,很难表征PIP1亚家族。此外,PIP1-PIP2相互作用的发现表明,PIP1水通道蛋白可以通过复杂的翻译后机制进行调控,该机制涉及运输,异源化和通道活性的微调。这篇综述不仅考虑了证据和发现,还讨论了PIP水通道蛋白的复杂性。为了在PIP调节中建立新的基准,我们建议考虑将PIP1-PIP2对作为功能单元,以便将来对其生理作用进行研究。 (C)2015年欧洲生物化学学会联合会。由Elsevier B. V.发行。保留所有权利。

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