Charó Nancy L, Rodríguez Ceschan María I, Galigniana Natalia M, Toneatto Judith, Piwien-Pilipuk Graciela
a Laboratory of Nuclear Architecture, Instituto de Biología y Medicina Experimental (IByME) - CONICET , Buenos Aires , Argentina.
Nucleus. 2016 May 3;7(3):249-69. doi: 10.1080/19491034.2016.1197442.
Obesity is a serious health problem worldwide since it is a major risk factor for chronic diseases such as type II diabetes. Obesity is the result of hyperplasia (associated with increased adipogenesis) and hypertrophy (associated with decreased adipogenesis) of the adipose tissue. Therefore, understanding the molecular mechanisms underlying the process of adipocyte differentiation is relevant to delineate new therapeutic strategies for treatment of obesity. As in all differentiation processes, temporal patterns of transcription are exquisitely controlled, allowing the acquisition and maintenance of the adipocyte phenotype. The genome is spatially organized; therefore decoding local features of the chromatin language alone does not suffice to understand how cell type-specific gene expression patterns are generated. Elucidating how nuclear architecture is built during the process of adipogenesis is thus an indispensable step to gain insight in how gene expression is regulated to achieve the adipocyte phenotype. Here we will summarize the recent advances in our understanding of the organization of nuclear architecture as progenitor cells differentiate in adipocytes, and the questions that still remained to be answered.
肥胖是一个全球性的严重健康问题,因为它是II型糖尿病等慢性疾病的主要风险因素。肥胖是脂肪组织增生(与脂肪生成增加相关)和肥大(与脂肪生成减少相关)的结果。因此,了解脂肪细胞分化过程的分子机制对于确定肥胖治疗的新策略至关重要。与所有分化过程一样,转录的时间模式受到精确控制,从而允许脂肪细胞表型的获得和维持。基因组在空间上是有组织的;因此,仅解码染色质语言的局部特征不足以理解细胞类型特异性基因表达模式是如何产生的。因此,阐明在脂肪生成过程中核结构是如何构建的,是深入了解基因表达如何被调控以实现脂肪细胞表型的不可或缺的一步。在这里,我们将总结在理解祖细胞分化为脂肪细胞过程中核结构组织方面的最新进展,以及仍有待回答的问题。