Linkages of nuclear architecture to biological and pathological control of gene expression.

G S Stein, A J van Wijnen, J L Stein, J B Lian, S M Pockwinse, S McNeil
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Abstract

Functional interrelationships between components of nuclear architecture and control of gene expression are becoming increasingly evident. There is growing appreciation that multiple levels of nuclear organization integrate the regulatory cues that support activation and suppression of genes as well as the processing of gene transcripts. The linear organization of genes and promoter elements provide the potential for responsiveness to physiological regulatory signals. Parameters of chromatin structure and nucleosome organization support synergism between activities at independent regulatory sequences and render promoter elements accessible or refractory to transcription factors. Association of genes, transcription factors, and the machinery for transcript processing with the nuclear matrix facilitates fidelity of gene expression within the three-dimensional context of nuclear architecture. Mechanisms must be defined that couple nuclear morphology with enzymatic parameters of gene expression. The recent characterization of factors that mediate chromatin remodeling and intranuclear targeting signals that direct transcription factors to subnuclear domains where gene expression occurs, reflect linkage of genetic and structural components of transcriptional control. Nuclear reorganization and aberrant intranuclear trafficking of transcription factors for developmental and tissue-specific control that occurs in tumor cells and in neurological disorders provides a basis for high resolution diagnostic and targeted therapy.

核结构与基因表达的生物和病理控制的联系。
核结构组成部分与基因表达控制之间的功能相互关系越来越明显。越来越多的人认识到,核组织的多个层次整合了支持基因激活和抑制以及基因转录物加工的调控线索。基因和启动子元件的线性组织提供了对生理调节信号响应的潜力。染色质结构和核小体组织参数支持独立调控序列活性之间的协同作用,并使启动子元件对转录因子可及或难及。基因、转录因子和转录处理机制与核基质的关联促进了在核结构的三维背景下基因表达的保真度。必须确定核形态与基因表达酶参数耦合的机制。最近对介导染色质重塑和核内靶向信号的因子的表征反映了转录控制的遗传和结构成分的联系,这些信号将转录因子引导到基因表达发生的亚核结构域。肿瘤细胞和神经系统疾病中发生的发育和组织特异性控制的核重组和转录因子的异常核内转运为高分辨率诊断和靶向治疗提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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