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人源 TRPML2 通道的组成型活性诱导细胞退化。

Constitutive activity of the human TRPML2 channel induces cell degeneration.

机构信息

Department of Medical Neurobiology and the Kühne Minerva Center for Studies of Visual Transduction, Faculty of Medicine of the Hebrew University, Jerusalem, Israel.

出版信息

J Biol Chem. 2010 Jan 22;285(4):2771-82. doi: 10.1074/jbc.M109.046508. Epub 2009 Nov 23.

Abstract

The mucolipin (TRPML) ion channel proteins represent a distinct subfamily of channel proteins within the transient receptor potential (TRP) superfamily of cation channels. Mucolipin 1, 2, and 3 (TRPML1, -2, and -3, respectively) are channel proteins that share high sequence homology with each other and homology in the transmembrane domain with other TRPs. Mutations in the TRPML1 protein are implicated in mucolipidosis type IV, whereas mutations in TRPML3 are found in the varitint-waddler mouse. The properties of the wild type TRPML2 channel are not well known. Here we show functional expression of the wild type human TRPML2 channel (h-TRPML2). The channel is functional at the plasma membrane and characterized by a significant inward rectification similar to other constitutively active TRPML mutant isoforms. The h-TRPML2 channel displays nonselective cation permeability, which is Ca(2+)-permeable and inhibited by low extracytosolic pH but not Ca(2+) regulated. In addition, constitutively active h-TRPML2 leads to cell death by causing Ca(2+) overload. Furthermore, we demonstrate by functional mutation analysis that h-TRPML2 shares similar characteristics and structural similarities with other TRPML channels that regulate the channel in a similar manner. Hence, in addition to overall structure, all three TRPML channels also share common modes of regulation.

摘要

黏脂贮积症 IV 型与 TRPML1 蛋白的突变有关,而 varitint-waddler 鼠则存在 TRPML3 的突变。TRPML2 蛋白的野生型的特性尚未完全了解。在此,我们展示了野生型人 TRPML2 通道(h-TRPML2)的功能性表达。该通道在质膜上具有功能,其特征为与其他组成型激活的 TRPML 突变体同工型相似的显著内向整流。h-TRPML2 通道表现出非选择性阳离子通透性,对 Ca2+ 具有通透性,并且可被低细胞外 pH 抑制,但不受 Ca2+ 调节。此外,组成型激活的 h-TRPML2 通过引起 Ca2+ 过载导致细胞死亡。此外,我们通过功能突变分析证明,h-TRPML2 与其他 TRPML 通道具有相似的特性和结构相似性,以相似的方式调节通道。因此,除了整体结构外,所有三种 TRPML 通道还具有共同的调节方式。

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本文引用的文献

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Functional multimerization of mucolipin channel proteins.
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The tissue-specific expression of TRPML2 (MCOLN-2) gene is influenced by the presence of TRPML1.
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