Department of Biological Sciences, Bose Institute, EN-80, Bidhan Nagar, Salt Lake, Sector-V, Kolkata, West Bengal, 700091, India.
Glycoconj J. 2024 Oct;41(4-5):343-360. doi: 10.1007/s10719-024-10168-5. Epub 2024 Oct 5.
Glycosphingolipids (GSLs) are a type of amphipathic lipid molecules consisting of hydrophobic ceramide backbone bound to carbohydrate moiety clustered in the cell surface microdomains named 'lipid rafts' and are known to participate in cell-cell communication as well as intra-cellular signaling, thereby facilitating critical normal cellular processes and functions. Over the past several decades, various GSLs have been reported to be aberrantly expressed in different cancers, many of which have been associated with their prognosis. The wide implication of MAPK signaling in controlling tumor growth, progression, and metastasis through activation of an upstream signaling cascade, often originating in the cell membrane, justifies the rationale for its plausible influence on MAPK signaling. This review highlights the role of GSLs and their metabolites in regulating different signaling pathways towards modulation of tumor cell growth, migration, and adhesion by interacting with various receptors [epidermal growth factor receptor (EGFR), and platelet derived growth factor receptor (PDGFR), and other receptor tyrosine kinases (RTKs)] leading to activation of the MAPK pathway. Furthermore, GSLs can influence the activity and localization of downstream signaling components in the MAPK pathway by regulating the activation state of kinases, which in turn, regulate the activity of MAPKs. Additionally, this review further consolidates the GSL-mediated modulation of MAPK pathway components through the regulation of gene expression. Finally, recent findings on GSL-MAPK crosstalk will be explored in this article for the identification of potential anti-cancer therapeutic targets.
糖脂(GSLs)是一类两亲性脂质分子,由疏水神经酰胺骨架与聚集在细胞表面微域的碳水化合物部分结合而成,这些微域被称为“脂筏”,已知它们参与细胞间通讯和细胞内信号转导,从而促进关键的正常细胞过程和功能。在过去的几十年中,已经报道了各种糖脂在不同癌症中异常表达,其中许多与它们的预后有关。MAPK 信号转导通过激活上游信号级联反应在控制肿瘤生长、进展和转移方面具有广泛的意义,该级联反应通常起源于细胞膜,这证明了其对 MAPK 信号转导可能产生影响的合理性。本综述强调了糖脂及其代谢物在通过与各种受体(表皮生长因子受体 (EGFR) 和血小板衍生生长因子受体 (PDGFR) 以及其他受体酪氨酸激酶 (RTKs)) 相互作用调节不同信号通路方面的作用,从而调节肿瘤细胞生长、迁移和黏附,最终激活 MAPK 通路。此外,糖脂可以通过调节激酶的激活状态来影响 MAPK 通路下游信号成分的活性和定位,从而调节 MAPKs 的活性。此外,本文还进一步通过调节基因表达来整合糖脂对 MAPK 通路成分的调节作用。最后,本文将探讨糖脂-MAPK 串扰的最新发现,以确定潜在的抗癌治疗靶点。