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鞘氨醇激酶 2 的作用、调控及抑制剂。

Roles, regulation and inhibitors of sphingosine kinase 2.

机构信息

Centre for Cancer Biology, SA Pathology, Adelaide, Australia; School of Molecular and Biomedical Science, University of Adelaide, Australia.

出版信息

FEBS J. 2013 Nov;280(21):5317-36. doi: 10.1111/febs.12314. Epub 2013 Jun 7.

Abstract

The bioactive sphingolipids ceramide, sphingosine and sphingosine-1-phosphate (S1P) are important signalling molecules that regulate a diverse array of cellular processes. Most notably, the balance of the levels of these three sphingolipids in cells, termed the 'sphingolipid rheostat', can dictate cell fate, where ceramide and sphingosine enhance apoptosis and S1P promotes cell survival and proliferation. The sphingosine kinases (SKs) catalyse the production of S1P from sphingosine and are therefore central regulators of the sphingolipid rheostat and attractive targets for cancer therapy. Two SKs exist in humans: SK1 and SK2. SK1 has been extensively studied and there is a large body of evidence to demonstrate its role in promoting cell survival, proliferation and neoplastic transformation. SK1 is also elevated in many human cancers which appears to contribute to carcinogenesis, chemotherapeutic resistance and poor patient outcome. SK2, however, has not been as well characterized, and there are contradictions in the key physiological functions that have been proposed for this isoform. Despite this, many studies are now emerging that implicate SK2 in key roles in a variety of diseases, including the development of a range of solid tumours. Here, we review the literature examining SK2, its physiological and pathophysiological functions, the current knowledge of its regulation, and recent developments in targeting this complex enzyme.

摘要

生物活性鞘脂类神经酰胺、鞘氨醇和鞘氨醇-1-磷酸(S1P)是调节多种细胞过程的重要信号分子。最值得注意的是,这些鞘脂在细胞中的水平平衡,称为“鞘脂变阻器”,可以决定细胞命运,其中神经酰胺和鞘氨醇增强细胞凋亡,而 S1P 促进细胞存活和增殖。鞘氨醇激酶(SKs)催化 S1P 从鞘氨醇的产生,因此是鞘脂变阻器的核心调节剂,也是癌症治疗的有吸引力的靶点。人类中存在两种 SK:SK1 和 SK2。SK1 已经进行了广泛的研究,有大量证据表明其在促进细胞存活、增殖和肿瘤转化中的作用。在许多人类癌症中也发现 SK1 升高,这似乎有助于致癌、化疗耐药和患者预后不良。然而,SK2 尚未得到很好的表征,并且对于该同工酶提出的关键生理功能存在矛盾。尽管如此,许多研究现在表明 SK2 在各种疾病中发挥关键作用,包括一系列实体瘤的发展。在这里,我们回顾了检查 SK2 的文献,包括其生理和病理生理功能、目前对其调节的认识以及针对这种复杂酶的最新进展。

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