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Chromatin and chromatin-modifying proteins in adipogenesis.

机译:脂肪形成中的染色质和染色质修饰蛋白。

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Long considered scarcely more than an uninteresting energy depot, adipose tissue has recently achieved star status. Far from being mere fat droplets, the adipocytes secrete a number of hormones and bioactive peptides, collectively known as adipokines, which participate in the regulation of a variety of functions, from haemostasis to angiogenesis to energy balance. Adipose tissue constitutes a bona-fide endocrine organ whose main dysfunctions, obesity and lipodystrophy, are related to the development of diabetes, hypertension, or dyslipidemia. The renewed interest in this tissue has prompted an escalation in the number of studies focusing on every aspect of the biology of the adipose cell, in the belief that a detailed knowledge of the mechanisms involved in the differentiation and function of adipocytes may contribute new therapeutical approaches to the treatment of such alarming medical problems. Adipogenesis is the result of an intertwined network of transcription factors and coregulators with chromatin-modifying activities that together, are responsible for the establishment of the gene expression pattern of mature adipocytes. Although the exquisitely regulated transcription factor cascade controlling adipogenesis has been extensively studied, the role of chromatin and chromatin-modifying proteins has become apparent only in recent times.
机译:脂肪组织长期以来一直被认为比一个无趣的能量库更受关注,最近它已获得星级地位。脂肪细胞不仅是脂肪滴,还分泌许多激素和生物活性肽(统称为脂肪因子),它们参与从止血到血管生成再到能量平衡的各种功能的调节。脂肪组织构成了真正的内分泌器官,其主要功能障碍,肥胖和脂肪营养不良与糖尿病,高血压或血脂异常的发展有关。人们对这种组织的新兴趣促使针对脂肪细胞生物学各个方面的研究数目不断增加,相信对脂肪细胞的分化和功能所涉及的机制的详细了解可能有助于新的治疗方法治疗此类令人震惊的医学问题。脂肪生成是转录因子和共调节剂与染色质修饰活性相互交织的网络的结果,它们共同构成成熟脂肪细胞的基因表达模式。尽管已经广泛研究了精确调控的转录因子级联控制脂肪形成,但是染色质和染色质修饰蛋白的作用仅在最近才变得明显。

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