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Pronounced cohabitation of active immunoglobulin genes from three different chromosomes in transcription factories during maximal antibody synthesis

机译:在最大抗体合成过程中转录工厂中来自三个不同染色体的活性免疫球蛋白基因的明显同居

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摘要

To understand the relationships between nuclear organization and gene expression in a model system, we employed three-dimensional imaging and chromatin immunoprecipitation (ChIP)-chromosome conformation capture (3C) techniques to investigate the topographies of the immunoglobulin (Ig) genes and transcripts during B-cell development. Remarkably, in plasma cells, when antibody synthesis peaks, active Ig genes residing on three different chromosomes exhibit pronounced colocalizations in transcription factories, often near the nuclear periphery, and display trans-chromosomal enhancer interactions, and their transcripts frequently share interchromatin trafficking channels. Conceptually, these features of nuclear organization maximize coordinated transcriptional and transcript trafficking control for potentiating the optimal cytoplasmic assembly of the resulting translation products into protein multimers.
机译:为了了解模型系统中核组织与基因表达之间的关系,我们采用了三维成像和染色质免疫沉淀(ChIP)-染色体构象捕获(3C)技术来研究免疫球蛋白(Ig)基因和转录物在B期的拓扑结构单元开发。值得注意的是,在浆细胞中,当抗体合成达到峰值时,位于三个不同染色体上的活性Ig基因在转录工厂中通常在核外围附近表现出明显的共定位,并显示出跨染色体增强子相互作用,并且它们的转录本经常共享染色质间的运输通道。从概念上讲,核组织的这些特征可最大化协调的转录和转录物运输控制,以增强最终翻译产物转化为蛋白质多聚体的最佳细胞质组装。

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