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正常及病理状态下细胞核功能域的细胞化学

Cytochemistry of the functional domains of the nucleus in normal and in pathologic conditions.

作者信息

Maraldi N M, Zini N, Santi S, Ognibene A, Rizzoli R, Mazzotti G, Manzoli F A

机构信息

Istituto di Citomorfologia Normale e Patologica C.N.R., Bologna, Italy.

出版信息

Eur J Histochem. 1998;42 Spec No:41-53.

Abstract

By means of ultrastructural cytochemistry significant advances have been made in understanding the functional roles of many nuclear domains. This review gives schematic information about the main nuclear domains involved in replication, transcription, processing and transport of the transcripts in normal and in pathologic conditions. Particular attention is paid to a functional domain that appears to be involved in signal transduction. Data are reported on the intranuclear specific localization of key elements of the polyphosphoinositide signal transduction system in different cell types including human osteosarcoma cell lines. Compared with the compartmentalization of the cytoplasm, the nucleus has long been considered as relatively unstructured. On the other hand, fundamental nuclear functions, such as DNA replication and RNA transcription, can be molecularly characterized also in cell-free systems, suggesting that supramolecular organization is not so strictly required as for other cell functions occurring within intact cytoplasmic organelles. Nevertheless, a stringent organization is required for packing about 200 cm of DNA in the about 30 micron 3 of the nucleus. In the absence of membrane-delimited organelles, the nuclear organization is based on functional compartments, or domains, whose spatial localization involves the nuclear matrix, which shares many properties with the cytoskeleton. The nuclear domains are defined as structural compartments, not necessarily stable but dynamically variable, which perform specific metabolic functions through the partitioning of molecular complexes. Their identification has been made possible in the last few years by the development of specific nuclear probes for confocal and electron microscope immunocytochemistry. Therefore, the complex network of structures and enzymatic functions that make up the nucleus is in several cases yielding to molecular analysis, but a large part remains unknown (Strouboulis and Wolffe, 1996; Laemmli and Tjian, 1996). Rapid advances in understanding the functional role of the nuclear domains have been made recently: in particular, of the nuclear envelope, of the nucleolus, and of RNA splicing. In other cases, e.g. the precise localization of the nuclear domains involved in signal transduction, much remains to be clarified (Forbes and Johnson, 1997). It is conceivable that in the near future unexpected new nuclear domains will come to light and new nuclear functions may emerge, especially in field of post-transcriptional processing and transport of RNAs, and in the relationships between the nucleo-skeleton and enzymic fixed sites involved in replication, transcription and signal transduction. The aim of this review is to provide information about the morphological characteristics, the associated functions and the molecular composition of the main nuclear domains found to date. To simplify the exposition, the main data on each nuclear domain are reported in Tables, together with the principal references on the subject. Figures refer to original findings on some aspects of nuclear domain organization.

摘要

借助超微结构细胞化学技术,在理解许多核结构域的功能作用方面已经取得了重大进展。本综述提供了关于正常和病理条件下参与转录本复制、转录、加工和运输的主要核结构域的示意性信息。特别关注了一个似乎参与信号转导的功能结构域。报告了多磷酸肌醇信号转导系统关键元件在包括人骨肉瘤细胞系在内的不同细胞类型中的核内特异性定位数据。与细胞质的区室化相比,长期以来细胞核一直被认为结构相对简单。另一方面,DNA复制和RNA转录等基本核功能在无细胞系统中也可以进行分子表征,这表明超分子组织对于完整细胞质细胞器内发生的其他细胞功能来说并非如此严格必需。然而,要将约200厘米长的DNA包装在约30立方微米的细胞核中,需要严格的组织。在没有膜界定细胞器的情况下,核组织基于功能区室或结构域,其空间定位涉及与细胞骨架具有许多共同特性的核基质。核结构域被定义为结构区室,不一定稳定但动态可变,通过分子复合物的分隔来执行特定的代谢功能。在过去几年中,通过开发用于共聚焦和电子显微镜免疫细胞化学的特异性核探针,使得对它们的识别成为可能。因此,构成细胞核的复杂结构和酶功能网络在一些情况下正在接受分子分析,但很大一部分仍然未知(斯特鲁布利斯和沃尔夫,1996;莱姆利和蒂贾恩,1996)。最近在理解核结构域的功能作用方面取得了快速进展:特别是关于核膜、核仁以及RNA剪接方面。在其他情况下,例如参与信号转导的核结构域的精确定位,仍有许多有待阐明(福布斯和约翰逊,1997)。可以想象,在不久的将来,意想不到的新核结构域将会被发现,新的核功能可能会出现,特别是在RNA的转录后加工和运输领域,以及在核骨架与参与复制、转录和信号转导的酶固定位点之间的关系方面。本综述的目的是提供关于迄今为止发现的主要核结构域的形态特征、相关功能和分子组成的信息。为了简化阐述,关于每个核结构域的主要数据列于表格中,并附上关于该主题的主要参考文献。附图涉及核结构域组织某些方面的原始研究结果。

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