Rivera Bastián, Orellana-Serradell Octavio, Servili Evrim, Santos Rodrigo, Brauchi Sebastián, Cerda Oscar
Program of Molecular and Cellular Biology, Institute of Biomedical Sciences, Faculty of Medicine, Universidad de Chile, Santiago, Chile.
Millennium Nucleus of Ion Channel-Associated Diseases (MiNICAD), Santiago, Valdivia, Chile.
Front Cell Dev Biol. 2024 Jul 23;12:1414935. doi: 10.3389/fcell.2024.1414935. eCollection 2024.
Ion channels are integral membrane proteins mediating ion flow in response to changes in their environment. Among the different types of ion channels reported to date, the super-family of TRP channels stands out since its members have been linked to many pathophysiological processes. The family comprises 6 subfamilies and 28 members in mammals, which are widely distributed throughout most tissues and organs and have an important role in several aspects of cellular physiology. It has been evidenced that abnormal expression, post-translational modifications, and channel trafficking are associated with several pathologies, such as cancer, cardiovascular disease, diabetes, and brain disorders, among others. In this review, we present an updated summary of the mechanisms involved in the subcellular trafficking of TRP channels, with a special emphasis on whether different post-translational modifications and naturally occurring mutagenesis affect both expression and trafficking. Additionally, we describe how such changes have been associated with the development and progress of diverse pathologies associated with the gain or loss of functional phenotypes. The study of these processes will not only contribute to a better understanding the role of TRP channels in the different tissues but will also present novel possible therapeutic targets in diseases where their activity is dysregulated.
离子通道是整合膜蛋白,可响应其环境变化介导离子流动。在迄今为止报道的不同类型的离子通道中,瞬时受体电位(TRP)通道超家族尤为突出,因为其成员与许多病理生理过程相关。该家族在哺乳动物中包括6个亚家族和28个成员,广泛分布于大多数组织和器官中,并且在细胞生理学的多个方面发挥重要作用。已有证据表明,异常表达、翻译后修饰和通道运输与多种疾病相关,如癌症、心血管疾病、糖尿病和脑部疾病等。在本综述中,我们对TRP通道亚细胞运输所涉及的机制进行了更新总结,特别强调不同的翻译后修饰和自然发生的诱变是否会影响表达和运输。此外,我们描述了这些变化如何与功能表型的获得或丧失相关的多种疾病的发生和发展相关。对这些过程的研究不仅将有助于更好地理解TRP通道在不同组织中的作用,还将为其活性失调的疾病提供新的潜在治疗靶点。