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The Functional Range of Heat Shock Proteins to Combat Environmental Toxicity

机译:热激蛋白对抗环境毒性的功能范围

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Almost all the organisms possess a system to cope with the harsh physiochemical factors of environment. Such a system is based on a group of stress genes, which show rapid responses in form of stress proteins, especially heat shock proteins, when cells are confronted with insult. Heat shock proteins are now known to express in response to variety of toxic and stress conditions including diseases. As a molecular chaperone, against cytotoxicity, these ensure the functional ability of cells by repairing the denatured proteins, cellular structures like cytoskeleton and centrosomes and processes dealing with protein synthesis are stabilized or repaired during a second stress in stress tolerant cells and organisms. In unstressed cells these play an imperative role in the synthesis and transport of normal proteins. Their role in certain diseases reveals their potential application in medical field. Certain Hsp are helpful in coping carcinogenicity caused environmental pollutants and have been suggested to have anti-apoptotic, anti stress and anti-allergic function. Their expression is tissue and species specific with respect to type, intensity and duration of a toxicant. These are developmentally regulated and help in process of differentiation and thus their abnormal regulation impairs the normal development. However, their role as biomarker in risk assessment of environmental pollution warrants further research. Due to broad functional range, therefore, present review is embracing the functional aspects of smaller and Hsp70 families expressing in animals under toxic conditions.
机译:几乎所有生物体都有一个系统来应对环境的严酷理化因素。这种系统基于一组应激基因,当细胞受到侮辱时,这些应激基因以应激蛋白(尤其是热激蛋白)的形式显示出快速反应。现已知道,热激蛋白可以响应多种毒性和应激条件(包括疾病)而表达。作为一种分子伴侣分子,它们具有抗细胞毒性的功能,可通过修复变性的蛋白质来确保细胞的功能能力,在承受压力的细胞和生物体的第二次胁迫期间,稳定或修复了涉及细胞骨架和中心体的细胞结构以及涉及蛋白质合成的过程。在不受压力的细胞中,这些在正常蛋白的合成和运输中起着至关重要的作用。它们在某些疾病中的作用揭示了其在医学领域的潜在应用。某些Hsp有助于应对由致癌性引起的环境污染物,并已被建议具有抗凋亡,抗应激和抗过敏功能。它们的表达对于毒物的类型,强度和持续时间具有组织和物种特异性。它们受到发育调节,并有助于分化过程,因此它们的异常调节会损害正常发育。然而,它们在环境污染风险评估中作为生物标志物的作用值得进一步研究。由于功能范围广,因此,本综述涵盖了在毒性条件下在动物中表达的较小的Hsp70家族的功能方面。

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