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对人类推测的氯离子通道Tweety家族进行的N-糖基化分析支持五跨膜排列:N-糖基化对Tweety同源物2(TTYH2)细胞加工的影响。

N-glycosylation analysis of the human Tweety family of putative chloride ion channels supports a penta-spanning membrane arrangement: impact of N-glycosylation on cellular processing of Tweety homologue 2 (TTYH2).

作者信息

He Yaowu, Ramsay Andrew J, Hunt Melanie L, Whitbread Astrid K, Myers Stephen A, Hooper John D

机构信息

Institute of Health and Biomedical Innovation and School of Life Sciences, Queensland University of Technology, Kelvin Grove, Queensland 4059, Australia.

出版信息

Biochem J. 2008 May 15;412(1):45-55. doi: 10.1042/BJ20071722.

Abstract

The Tweety proteins are a family of recently identified putative Cl(-) channels predicted to be modified by N-glycosylation and, controversially, to contain five or six membrane-spanning domains, leading to the contentious proposal that members of this family do not share the same topology at the plasma membrane. In humans, three family members have been identified, designated TTYH1 (Tweety homologue 1), TTYH2 and TTYH3. To gain greater insight into the arrangement of membrane-spanning domains and cellular processing of Tweety proteins, in the present study we have examined the sequence homology, hydrophobicity and N-glycan content of members of this family and performed N-glycosylation site-mutagenesis studies on TTYH2 and TTYH3. Based on these observations we propose a structure for Tweety family proteins which incorporates five membrane-spanning domains with a topology at the cell surface in which the N-terminus is located extracellularly and the C-terminus cytoplasmically. Our results also suggest that N-glycosylation is important, but not essential, in the processing of members of the Tweety family with results indicating that, although incomplete N-glycosylation mediates reduced expression and increased ubiquitination of TTYH2, N-glycosylation is not the determining factor for TTYH2 trafficking to the plasma membrane. This information will be important for the characterization of Tweety family proteins in normal physiology and disease.

摘要

Tweety蛋白家族是最近发现的一类假定的氯离子通道,预计会被N-糖基化修饰,且存在争议的是,它们含有五个或六个跨膜结构域,这导致了一个有争议的提议,即该家族成员在质膜上不具有相同的拓扑结构。在人类中,已鉴定出三个家族成员,分别命名为TTYH1(Tweety同源物1)、TTYH2和TTYH3。为了更深入地了解Tweety蛋白的跨膜结构域排列和细胞加工过程,在本研究中,我们检测了该家族成员的序列同源性、疏水性和N-聚糖含量,并对TTYH2和TTYH3进行了N-糖基化位点诱变研究。基于这些观察结果,我们提出了Tweety家族蛋白的一种结构,该结构包含五个跨膜结构域,在细胞表面的拓扑结构中,N端位于细胞外,C端位于细胞质中。我们的结果还表明,N-糖基化在Tweety家族成员的加工过程中很重要,但不是必需的,结果表明,虽然不完全的N-糖基化介导了TTYH2表达的降低和泛素化的增加,但N-糖基化不是TTYH2转运到质膜的决定因素。这些信息对于在正常生理学和疾病中表征Tweety家族蛋白将具有重要意义。

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