Sphingolipid metabolism in cancer signalling and therapy

鞘脂 神经酰胺 鞘氨醇 生物 癌细胞 癌症研究 细胞生物学 癌症 信号转导 程序性细胞死亡 神经酰胺合酶 1-磷酸鞘氨醇 鞘氨醇激酶 脂质信号 细胞凋亡 受体 生物化学 遗传学
作者
Besim Öğretmen
出处
期刊:Nature Reviews Cancer [Nature Portfolio]
卷期号:18 (1): 33-50 被引量:974
标识
DOI:10.1038/nrc.2017.96
摘要

Sphingolipids, specifically ceramide and sphingosine-1-phosphate, have opposing roles in regulating cancer cell death and survival, respectively. This Review discusses the mechanistic and clinical studies of sphingolipid signalling and metabolism in cancer, highlighting current and emerging therapeutic strategies to target these bioactive lipids. Sphingolipids, including the two central bioactive lipids ceramide and sphingosine-1-phosphate (S1P), have opposing roles in regulating cancer cell death and survival, respectively, and there have been exciting developments in understanding how sphingolipid metabolism and signalling regulate these processes in response to anticancer therapy. Recent studies have provided mechanistic details of the roles of sphingolipids and their downstream targets in the regulation of tumour growth and response to chemotherapy, radiotherapy and/or immunotherapy using innovative molecular, genetic and pharmacological tools to target sphingolipid signalling nodes in cancer cells. For example, structure–function-based studies have provided innovative opportunities to develop mechanism-based anticancer therapeutic strategies to restore anti-proliferative ceramide signalling and/or inhibit pro-survival S1P–S1P receptor (S1PR) signalling. This Review summarizes how ceramide-induced cellular stress mediates cancer cell death through various mechanisms involving the induction of apoptosis, necroptosis and/or mitophagy. Moreover, the metabolism of ceramide for S1P biosynthesis, which is mediated by sphingosine kinase 1 and 2, and its role in influencing cancer cell growth, drug resistance and tumour metastasis through S1PR-dependent or receptor-independent signalling are highlighted. Finally, studies targeting enzymes involved in sphingolipid metabolism and/or signalling and their clinical implications for improving cancer therapeutics are also presented.
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