Molecular Cell Biology Laboratory, Integral Information and Research Centre-4 (IIRC-4), Integral University, Kursi Road, Lucknow, 226026, India; Department of Bioengineering, Faculty of Engineering, Integral University, Kursi Road, Lucknow, 226026, India.
Molecular Cell Biology Laboratory, Integral Information and Research Centre-4 (IIRC-4), Integral University, Kursi Road, Lucknow, 226026, India; Department of Biosciences, Faculty of Science, Integral University, Kursi Road, Lucknow, 226026, India.
Arch Biochem Biophys. 2023 Mar 1;736:109537. doi: 10.1016/j.abb.2023.109537. Epub 2023 Feb 3.
Heat shock protein 27 is a type of molecular chaperone whose expression gets up-regulated due to reaction towards different stressful triggers including anticancer treatments. It is known to be a major player of resistance development in cancer cells, whereby cells are sheltered against the therapeutics that normally activate apoptosis. Heat shock protein 27 (HSP27) is one of the highly expressed proteins during various cellular insults and is a strong tumor survival factor. HSP27 influences various cellular pathways associated with cancer cell survival and growth such as apoptosis, autophagy, metastasis, angiogenesis, epithelial to mesenchymal transition, etc. HSP27 is molecular machinery which prevents the clumping of numerous substrates or client proteins which get mutated in cancer. It has been reported in several studies that targeting HSP27 is difficult because of its dynamic structure and absence of an ATP-binding site. Here, in this review, we have summarized different modulators of HSP27 and their mechanism of action as well. Effect of deregulated HSP27 in various cancer models, limitations of targeting HSP27, resistance against the conventional drugs generated due to the overexpression of HSP27, and measures to counteract this effect have also been discussed here in detail.
热休克蛋白 27 是一种分子伴侣,其表达会因对包括抗癌治疗在内的各种应激触发因素的反应而上调。它是癌细胞耐药性发展的主要参与者,使细胞免受通常激活细胞凋亡的治疗药物的影响。热休克蛋白 27(HSP27)是各种细胞损伤过程中高度表达的蛋白质之一,是一种强大的肿瘤生存因子。HSP27 影响与癌细胞存活和生长相关的各种细胞途径,如细胞凋亡、自噬、转移、血管生成、上皮间质转化等。HSP27 是一种分子机制,可防止在癌症中发生突变的许多底物或客户蛋白的聚集。有几项研究报道称,由于 HSP27 的动态结构和缺乏 ATP 结合位点,靶向 HSP27 非常困难。在这篇综述中,我们总结了 HSP27 的不同调节剂及其作用机制。还详细讨论了 HSP27 失调在各种癌症模型中的作用、靶向 HSP27 的局限性、由于 HSP27 过表达而产生的对常规药物的耐药性以及对抗这种作用的措施。