Cuajungco Math P, Silva Joshua, Habibi Ania, Valadez Jessica A
Department of Biological Science, California State University Fullerton, 800 N. State College Blvd., Fullerton, CA, 92831, USA.
Center for Applied Biotechnology Studies, California State University Fullerton, Fullerton, CA, 92831, USA.
Pflugers Arch. 2016 Feb;468(2):177-92. doi: 10.1007/s00424-015-1732-2. Epub 2015 Sep 4.
The discovery of the TRPML subfamily of ion channels has created an exciting niche in the fields of membrane trafficking, signal transduction, autophagy, and metal homeostasis. The TRPML protein subfamily consists of three members, TRPML1, TRPML2, and TRPML3, which are encoded by MCOLN1, MCOLN2, and MCOLN3 genes, respectively. They are non-selective cation channels with six predicted transmembrane domains and intracellular amino- and carboxyl-terminus regions. They localize to the plasma membrane, endosomes, and lysosomes of cells. TRPML1 is associated with the human lysosomal storage disease known as mucolipidosis type IV (MLIV), but TRPML2 and TRPML3 have not been linked with a human disease. Although TRPML1 is expressed in many tissues, TRPML3 is expressed in a varied but limited set of tissues, while TRPML2 has a more limited expression pattern where it is mostly detected in lymphoid and myeloid tissues. This review focuses on TRPML2 because it appears to play an important, yet unrecognized role in the immune system. While the evidence has been mostly indirect, we present and discuss relevant data that strengthen the connection of TRPML2 with cellular immunity. We also discuss the functional redundancy between the TRPML proteins, and how such features could be exploited as a potential therapeutic strategy for MLIV disease. We present evidence that TRPML2 expression may complement certain phenotypic alterations in MLIV cells and briefly examine the challenges of functional complementation. In conclusion, the function of TRPML2 still remains obscure, but emerging data show that it may serve a critical role in immune cell development and inflammatory responses.
离子通道的瞬时受体电位黏蛋白样(TRPML)亚家族的发现,在膜运输、信号转导、自噬和金属稳态等领域开创了一个令人兴奋的细分领域。TRPML蛋白质亚家族由三个成员组成,即TRPML1、TRPML2和TRPML3,它们分别由MCOLN1、MCOLN2和MCOLN3基因编码。它们是具有六个预测跨膜结构域以及细胞内氨基末端和羧基末端区域的非选择性阳离子通道。它们定位于细胞膜、内体和细胞的溶酶体。TRPML1与被称为IV型黏脂贮积症(MLIV)的人类溶酶体贮积病相关,但TRPML2和TRPML3尚未与人类疾病联系起来。尽管TRPML1在许多组织中表达,但TRPML3在多种但有限的一组组织中表达,而TRPML2的表达模式更为有限,主要在淋巴和髓系组织中检测到。本综述聚焦于TRPML2,因为它似乎在免疫系统中发挥着重要但尚未被认识到的作用。虽然证据大多是间接的,但我们展示并讨论了加强TRPML2与细胞免疫联系的相关数据。我们还讨论了TRPML蛋白质之间的功能冗余,以及如何利用这些特性作为MLIV疾病的潜在治疗策略。我们提供证据表明TRPML2的表达可能补充MLIV细胞中的某些表型改变,并简要探讨功能互补的挑战。总之,TRPML2的功能仍然不明,但新出现的数据表明它可能在免疫细胞发育和炎症反应中起关键作用。