Anatomy and Physiopathology Division, Department of Clinical and Experimental Sciences, Viale Europa 11, 25123 Brescia, Italy.
Interdepartmental University Center of Research "Adaptation and Regeneration of Tissues and Organs-(ARTO)", University of Brescia, 25123 Brescia, Italy.
Cells. 2019 May 2;8(5):408. doi: 10.3390/cells8050408.
Since the pioneering discovery of heat shock proteins in by Ferruccio Ritossa in 1960s, a long and exciting journey has been undertaken by molecular biologists and researchers worldwide. Not only lower organisms like worms, yeast, amoeba, and flies but also eukaryotes share common cellular response signals to stressful conditions that can arise from the outside but also from the inside. Moreover, extraordinary interplay between nucleus and subcellular organelles, and between different organelles, like mitochondria and the endoplasmic reticulum called mitochondria-associated endoplasmic reticulum membranes (MAMs), are involved in aging and human diseases like obesity, diabetes, inflammation, neurodegeneration, autoimmune diseases, atherosclerosis, and cancer. Actually, we know that to hit abnormal proteostasis and lipid exchanges in the endoplasmic reticulum is crucial to best guide effective therapies or discover new drugs. Indeed, restoration or impairment of endoplasmic reticulum shape and function lead to cellular homeostasis by autophagy or to final death generally by apoptosis or pyroptosis. This Special Issue collects current valuable articles or reviews on cellular stress research and each contribution opens a new window for further studies and hypothesis. I hope that readers interested in this fascinating topic may be stimulated to know more and more.
自 20 世纪 60 年代 Ferruccio Ritossa 开创性地发现热休克蛋白以来,全世界的分子生物学家和研究人员已经走过了一段漫长而激动人心的旅程。不仅像蠕虫、酵母、变形虫和苍蝇这样的低等生物,而且真核生物也都对外界和内部产生的应激条件产生共同的细胞反应信号。此外,细胞核和亚细胞细胞器之间,以及不同细胞器之间,如线粒体和内质网之间的内质网相关膜(MAMs)之间的非凡相互作用,都与衰老和人类疾病有关,如肥胖、糖尿病、炎症、神经退行性疾病、自身免疫性疾病、动脉粥样硬化和癌症。实际上,我们知道,打击内质网中异常的蛋白质稳态和脂质交换对于指导有效的治疗方法或发现新药物至关重要。事实上,内质网形状和功能的恢复或损害通过自噬导致细胞内稳态,或者通常通过细胞凋亡或细胞焦亡导致最终死亡。本期特刊汇集了关于细胞应激研究的当前有价值的文章或综述,每一篇贡献都为进一步的研究和假设打开了一扇新的窗户。我希望对这个迷人主题感兴趣的读者能够受到启发,想要了解更多。