Department of Internal Medicine, Division of Endocrinology, Erasmus MC, Rotterdam, The Netherlands.
Department of Radiology & Nuclear Medicine, Erasmus MC, Rotterdam, The Netherlands.
Rev Endocr Metab Disord. 2021 Sep;22(3):495-510. doi: 10.1007/s11154-020-09607-z. Epub 2020 Oct 21.
Both somatostatin (SST) and somatostatin receptors (SSTRs) are proteins with important functions in both physiological tissue and in tumors, particularly in neuroendocrine tumors (NETs). NETs are frequently characterized by high SSTRs expression levels. SST analogues (SSAs) that bind and activate SSTR have anti-proliferative and anti-secretory activity, thereby reducing both the growth as well as the hormonal symptoms of NETs. Moreover, the high expression levels of SSTR type-2 (SSTR2) in NETs is a powerful target for therapy with radiolabeled SSAs. Due to the important role of both SST and SSTRs, it is of great importance to elucidate the mechanisms involved in regulating their expression in NETs, as well as in other types of tumors. The field of epigenetics recently gained interest in NET research, highlighting the importance of this process in regulating the expression of gene and protein expression. In this review we will discuss the role of the epigenetic machinery in controlling the expression of both SSTRs and the neuropeptide SST. Particular attention will be given to the epigenetic regulation of these proteins in NETs, whereas the involvement of the epigenetic machinery in other types of cancer will be discussed as well. In addition, we will discuss the possibility to target enzymes involved in the epigenetic machinery to modify the expression of the SST-system, thereby possibly improving therapeutic options.
生长抑素(SST)及其受体(SSTRs)都是具有重要生理功能的蛋白质,在肿瘤中,特别是神经内分泌肿瘤(NETs)中具有重要功能。NETs 通常表现出高 SSTRs 表达水平。与 SSTR 结合并激活 SSTR 的生长抑素类似物(SSAs)具有抗增殖和抗分泌活性,从而减少 NETs 的生长和激素症状。此外,NETs 中 SSTR 类型-2(SSTR2)的高表达水平是用放射性标记的 SSAs 进行治疗的强大靶点。由于 SST 和 SSTRs 的重要作用,阐明其在 NETs 以及其他类型肿瘤中表达的调节机制非常重要。表观遗传学领域最近对 NET 研究产生了兴趣,强调了这一过程在调节基因和蛋白质表达中的重要性。在这篇综述中,我们将讨论表观遗传机制在控制 SSTRs 和神经肽 SST 表达中的作用。特别关注这些蛋白质在 NETs 中的表观遗传调控,同时也讨论了表观遗传机制在其他类型癌症中的参与。此外,我们将讨论靶向参与表观遗传机制的酶来修饰 SST 系统的表达的可能性,从而可能改善治疗选择。