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Nuclear bodies and compartments: Functional roles and cellular signalling in health and disease

机译:核体和隔室:在健康和疾病中的功能性作用和细胞信号转导

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There is much interest in recent years in the possible role of different nuclear compartments and subnuclear domains in the regulation of gene expression, signalling, and cellular functions. The nucleus contains inositol phosphates, actin and actin-binding proteins and myosin isoforms, multiple protein kinases and phosphatases targeting Cdk-1 and Cdk-2, MAPK/SAPK, and Src-related kinases and their substrates, suggesting the implication of several signalling pathways in the intranuclear organization and function of nuclear bodies (NBs). NBs include the well-characterized Cajal bodies (CBs; or coiled bodies), the nucleolus, perinucleolar and perichromatin regions, additional NBs best illustrated by the promyelocytic leukemia nuclear bodies [PML-NBs, also named PML oncogenic dots (PODS), ND10, Kr-bodies] and similar intranuclear foci containing multi-molecular complexes with major role in DNA replication, surveillance, and repair, as well as messenger RNA and ribosomal RNA synthesis and assembly. Chromatin modifying proteins, such as the CBP acetyltransferase and type 1 histone deacetylase, accumulate at PML-NBs. PML-NBs and Cajal bodies are very dynamic and mobile within the nuclear space and are regulated by cellular stress (heat shock, apoptosis, senescence, heavy metal exposure, viral infection, and DNA damage responses). NBs strongly interact, using signalling mechanisms for the directional and ordered traffic of essential molecular components. NBs organize the delivery and storage of essential RNAs and proteins that play a role in transcription, pre-mRNA biosynthesis and splicing, and the sequestration and/or degradation of regulatory proteins, such as heterogenous nuclear ribonuclear proteins (hnRNPs), p53, Rb1, CBP, STAT3, and others. The objective of this review is to summarize some aspects of these nuclear structures/bodies/domains, including their proposed roles in cellular signalling and in human diseases, mainly neurodegenerative disorders and cancer. (C) 2004 Elsevier Inc. All rights reserved.
机译:近年来,人们对不同核区室和亚核域在基因表达,信号传导和细胞功能调节中的可能作用感兴趣。细胞核包含肌醇磷酸,肌动蛋白和肌动蛋白结合蛋白以及肌球蛋白同工型,针对Cdk-1和Cdk-2,MAPK / SAPK和Src相关激酶及其底物的多种蛋白激酶和磷酸酶,这暗示了几种信号通路的含义。在核内组织和核机构的功能。 NB包括特征明确的Cajal体(CB;或螺旋形体),核仁,核仁周围和染色质周围区域,其他NB由早幼粒细胞白血病核体[PML-NBs,也称为PML致癌点(PODS),ND10, [Kr-body]和类似的核内病灶,其中包含在DNA复制,监视和修复以及信使RNA和核糖体RNA合成和组装中起主要作用的多分子复合物。染色质修饰蛋白(例如CBP乙酰转移酶和1型组蛋白脱乙酰基酶)积累在PML-NB处。 PML-NBs和Cajal体在核空间内非常动态且可移动,并受细胞应激(热休克,凋亡,衰老,重金属暴露,病毒感染和DNA损伤反应)调节。 NB使用信号传导机制对必需分子成分的定向和有序运输进行强烈交互。 NB组织传递和存储在转录,mRNA前生物合成和剪接以及螯合和/或降解调节蛋白(例如异源核核糖蛋白(hnRNPs),p53,Rb1, CBP,STAT3等。这篇综述的目的是总结这些核结构/体/结构域的某些方面,包括它们在细胞信号传导和人类疾病(主要是神经退行性疾病和癌症)中的拟议作用。 (C)2004 Elsevier Inc.保留所有权利。

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