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The rest repression of the neurosecretory phenotype is negatively modulated by BHC80, a protein of the BRAF/HDAC complex

机译:BHC80(BRAF / HDAC复合物的一种蛋白)对神经分泌表型的其余抑制作用具有负调节作用。

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摘要

Expression of neurosecretion by nerve cells requires the levels of the transcription repressor element-1 silencing transcription factor (REST) to be very low. However, when high-REST clones of PC12 cells, defective of neurosecretion, were fused to other high-REST, non-neurosecretory cells, some neurosecretion was recovered. To clarify the mechanism of this recovery, we fused defective PC12 cells with human lymphocytes. A cytogenetic analysis revealed all hybrid clones that recovered neurosecretion to contain a fragment of chromosome 11 including the gene encoding BHC80, a protein of one of the complexes that mediate REST repression. In these clones, REST levels were as high as in defective PC12, whereas BHC80, localized in the nucleus, was 4- to 5-fold higher. Transient transfection of defective PC12 with various amounts of BHC80 cDNA induced (1) in defective PC12, the reexpression of only neurosecretion mRNAs; (2) in defective PC12 cotransfected with the REST negative construct DNA-binding domain (to attenuate gene repression), the recovery of a weak, but complete neurosecretory phenotype, including dense-core granules and their regulated exocytosis. Chromatin immunoprecipitation and immunodepletion analyses revealed the extensive BHC80 association with REST at the genes of two neurosecretion proteins, chromograninB and SNAP25, however only in the low-REST PC12, whereas in high-REST defective PC12 no association was appreciable. In defective PC12 transfected with BHC80 some association was reestablished. Therefore, the recovery of neurosecretion observed after fusion/transfection of defective PC12 depends on the reciprocal level of BHC80 and REST, with BHC80 working as a negative modulator of REST repression. This role appears of possible cell physiological and pathological importance.
机译:神经细胞表达神经分泌需要转录抑制因子1沉默转录因子(REST)的水平非常低。但是,当将神经分泌缺陷的PC12细胞的高REST克隆与其他高REST的非神经营养细胞融合时,一些神经分泌得以恢复。为了阐明这种恢复的机制,我们将有缺陷的PC12细胞与人淋巴细胞融合在一起。细胞遗传学分析显示,所有恢复神经分泌的杂种克隆均含有11号染色体片段,其中包括编码BHC80的基因,BHC80是介导REST抑制的复合物之一的蛋白质。在这些克隆中,REST水平与有缺陷的PC12一样高,而位于细胞核中的BHC80则高4至5倍。用各种量的BHC80 cDNA瞬时转染有缺陷的PC12(1)在有缺陷的PC12中,仅神经分泌mRNA的重新表达; (2)在有缺陷的PC12中与REST阴性构建体DNA结合结构域共转染(以减弱基因阻抑),恢复了弱但完整的神经分泌表型,包括致密颗粒及其调节的胞吐作用。染色质的免疫沉淀和免疫耗竭分析显示,在两种神经分泌蛋白,嗜铬粒蛋白B和SNAP25的基因上,广泛的BHC80与REST有关联,但是仅在低REST PC12中存在,而在高REST有缺陷的PC12中则没有明显的联系。在用BHC80转染的有缺陷的PC12中,重新建立了某种关联。因此,在有缺陷的PC12融合/转染后观察到的神经分泌恢复取决于BHC80和REST的相互水平,而BHC80作为REST抑制的负调节剂。这种作用似乎具有细胞生理和病理学重要性。

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