Emerging Roles of Calreticulin in Cancer: Implications for Therapy

钙网蛋白 免疫原性细胞死亡 细胞生物学 内质网 癌变 组蛋白脱乙酰基酶 乙酰化 信号转导 细胞粘附 癌细胞 化学 生物 癌症 程序性细胞死亡 癌症研究 细胞 组蛋白 生物化学 细胞凋亡 基因 遗传学
作者
Kavya Venkateswaran,Amit Verma,Anant Narayan Bhatt,Anju Shrivastava,Kailash Manda,Hanumantharao G. Raj,Ashok K. Prasad,Christophe Len,Virinder S. Parmar,Bilikere S. Dwarakanath
出处
期刊:Current Protein & Peptide Science [Bentham Science Publishers]
卷期号:19 (4): 344-357 被引量:29
标识
DOI:10.2174/1389203718666170111123253
摘要

Calreticulin (CRT), initially identified as a ubiquitous calcium-binding protein in the endoplasmic reticulum, has emerged as a multifunctional protein with roles in calcium homeostasis, molecular chaperoning and cell adhesion. Emerging evidence suggests its involvement in tumorigenesis facilitating proliferation, migration, and adhesion. CRT translocated to the cell surface (ecto-CRT) serves as a phagocytic signal for immunogenic cell death (ICD) mediated through dendritic cells (DCs) and cytotoxic T-cell activation thereby making tumors susceptible to immunotherapy-based anti-cancer strategies. CRT is now regarded as one of the most potent danger-associated molecular patterns (DAMPs) with the ecto-CRT triggering restoration of homeostasis by immune stimulation. A recently identified novel transacetylase activity of CRT adds a new dimension to its multi-faceted involvement in cancer by virtue of polyphenolic acetates (PA): CRT transacetylase (CRTase) system which results in hyperacetylation of target proteins, thereby mimicking the effects of Histone deacetylase inhibitors (HDACi). Since protein acetylation is one of the crucial post-translational modifications (PTMs) influencing the epigenetic regulation and signal transduction, CRT can be a potential target for developing anticancer therapeutics and preventive strategies by employing pharmacologically compatible semi-synthetic acetyl donors like polyphenolic acetates and other agents. Keywords: Calreticulin, immunogenic cell death, danger-associated molecular patterns, protein acetylation, polyphenolic acetates, calreticulin transacetylase, cancer therapy.

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