Haque Moinul, Kendal Joseph Keith, MacIsaac Ryan Matthew, Demetrick Douglas James
Department of Pathology and Laboratory Medicine, University of Calgary, Calgary, AB, T2N 4N1, Canada.
Department of Oncology, University of Calgary, Calgary, AB, T2N 4N1, Canada.
J Biomed Sci. 2016 Aug 19;23(1):61. doi: 10.1186/s12929-016-0270-3.
The wsb1 gene has been identified to be important in developmental biology and cancer. A complex transcriptional regulation of wsb1 yields at least three functional transcripts. The major expressed isoform, WSB1 protein, is a substrate recognition protein within an E3 ubiquitin ligase, with the capability to bind diverse targets and mediate ubiquitinylation and proteolytic degradation. Recent data suggests a new role for WSB1 as a component of a neuroprotective pathway which results in modification and aggregation of neurotoxic proteins such as LRRK2 in Parkinson's Disease, via an unusual mode of protein ubiquitinylation.WSB1 is also involved in thyroid hormone homeostasis, immune regulation and cellular metabolism, particularly glucose metabolism and hypoxia. In hypoxia, wsb1 is a HIF-1 target, and is a regulator of the degradation of diverse proteins associated with the cellular response to hypoxia, including HIPK2, RhoGDI2 and VHL. Major roles are to both protect HIF-1 function through degradation of VHL, and decrease apoptosis through degradation of HIPK2. These activities suggest a role for wsb1 in cancer cell proliferation and metastasis. As well, recent work has identified a role for WSB1 in glucose metabolism, and perhaps in mediating the Warburg effect in cancer cells by maintaining the function of HIF1. Furthermore, studies of cancer specimens have identified dysregulation of wsb1 associated with several types of cancer, suggesting a biologically relevant role in cancer development and/or progression.Recent development of an inducible expression system for wsb1 could aid in the further understanding of the varied functions of this protein in the cell, and roles as a potential oncogene and neuroprotective protein.
wsb1基因已被确定在发育生物学和癌症中具有重要作用。wsb1复杂的转录调控产生至少三种功能性转录本。主要表达的异构体WSB1蛋白是E3泛素连接酶中的一种底物识别蛋白,能够结合多种靶标并介导泛素化和蛋白水解降解。最近的数据表明WSB1作为神经保护途径的一个组成部分具有新的作用,该途径通过一种不寻常的蛋白质泛素化模式导致帕金森病中神经毒性蛋白如LRRK2的修饰和聚集。WSB1还参与甲状腺激素稳态、免疫调节和细胞代谢,特别是葡萄糖代谢和缺氧。在缺氧状态下,wsb1是HIF-1的靶标,并且是与细胞对缺氧反应相关的多种蛋白质降解的调节剂,包括HIPK2、RhoGDI2和VHL。主要作用是通过降解VHL来保护HIF-1功能,并通过降解HIPK2来减少细胞凋亡。这些活性表明wsb1在癌细胞增殖和转移中具有作用。同样,最近的研究确定了WSB1在葡萄糖代谢中的作用,并且可能通过维持HIF1的功能在癌细胞中介导瓦伯格效应。此外,对癌症标本的研究已经确定wsb1的失调与几种类型的癌症相关,这表明其在癌症发生和/或进展中具有生物学相关作用。最近开发的wsb1诱导表达系统有助于进一步了解该蛋白在细胞中的多种功能,以及作为潜在癌基因和神经保护蛋白的作用。