Mazzio Elizabeth A, Soliman Karam F A
Florida A&M University, College of Pharmacy & Pharmaceutical Sciences, 1520 S MLK Jr. Blvd Tallahassee, FL 32307, USA.
Florida A&M University, College of Pharmacy & Pharmaceutical Sciences, 1520 S MLK Jr. Blvd Tallahassee, FL 32307, USA
Integr Comp Biol. 2014 Jul;54(1):21-30. doi: 10.1093/icb/icu049. Epub 2014 May 26.
All terrestrial life is influenced by multi-directional flows of information about its environment, enabling malleable phenotypic change through signals, chemical processes, or various forms of energy that facilitate acclimatization. Billions of biological co-inhabitants of the earth, including all plants and animals, collectively make up a genetic/epigenetic ecosystem by which adaptation/survival (inputs and outputs) are highly interdependent on one another. As an ecosystem, the solar system, rotation of the planets, changes in sunlight, and gravitational pull influence cyclic epigenetic transitions and chromatin remodeling that constitute biological circadian rhythms controlling senescence. In humans, adverse environmental conditions such as poverty, stress, alcohol, malnutrition, exposure to pollutants generated from industrialization, man-made chemicals, and use of synthetic drugs can lead to maladaptive epigenetic-related illnesses with disease-specific genes being atypically activated or silenced. Nutrition and dietary practices are one of the largest facets in epigenetic-related metabolism, where specific "epi-nutrients" can stabilize the genome, given established roles in DNA methylation, histone modification, and chromatin remodeling. Moreover, food-based "epi-bioactive" constituents may reverse maladaptive epigenetic patterns, not only prior to conception and during fetal/early postnatal development but also through adulthood. In summary, in contrast to a static genomic DNA structure, epigenetic changes are potentially reversible, raising the hope for therapeutic and/or dietary interventions that can reverse deleterious epigenetic programing as a means to prevent or treat major illnesses.
所有陆地生物都受到有关其环境的多向信息流的影响,通过信号、化学过程或各种形式的能量实现可塑性表型变化,从而促进适应性变化。地球上数十亿的生物共同居住者,包括所有植物和动物,共同构成了一个遗传/表观遗传生态系统,通过这个系统,适应/生存(输入和输出)彼此高度相互依存。作为一个生态系统,太阳系、行星的自转、阳光的变化以及引力会影响周期性的表观遗传转变和染色质重塑,这些转变和重塑构成了控制衰老的生物昼夜节律。在人类中,诸如贫困、压力、酒精、营养不良、接触工业化产生的污染物、人造化学物质以及使用合成药物等不利环境条件,可能导致与表观遗传相关的适应不良疾病,特定的疾病相关基因会被异常激活或沉默。营养和饮食习惯是表观遗传相关代谢中最大的方面之一,特定的“表观营养素”在DNA甲基化、组蛋白修饰和染色质重塑中发挥既定作用,能够稳定基因组。此外,基于食物的“表观生物活性”成分不仅在受孕前以及胎儿/出生后早期发育期间,而且在成年期都可能逆转适应不良的表观遗传模式。总之,与静态的基因组DNA结构不同,表观遗传变化具有潜在的可逆性,这为治疗和/或饮食干预带来了希望,这些干预可以逆转有害的表观遗传编程,以此作为预防或治疗重大疾病的手段。