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Creating a neural specific chromatin landscape by npBAF and nBAF complexes

机译:通过npBAF和nBAF复合物创建神经特定的染色质景观

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摘要

Several features make the chromatin environment of neurons likely to be different than any other cell type. These include the fact that several hundred types of neurons exist, each requiring specialized patterns of gene expression and in turn specialized chromatin landscapes. In addition, neurons have the most stable morphology of any cell type, a unique feature essential for memory. Yet these stable morphologies must allow the emergence of new stable morphologies in response to environmental influences permitting learning to occur by altered morphology and new synapse formation. Several years ago we found that neurons have specific chromatin remodeling mechanisms not present in any other cell type that are produced by combinatorial assembly of ATP-dependent chromatin remodeling complexes. The neural specific subunits are essential for normal neural development, learning and memory. Remarkably, recreating these neural specific complexes in fibroblasts leads to their conversion to neurons. Recently, the subunits of these complexes have been found to have genetically dominant roles in several human neurologic diseases. The genetic dominance of these mutations suggests that less severe mutations will contribute to phenotypic variation in human neuronally derived traits.
机译:多种功能使神经元的染色质环境可能不同于任何其他细胞类型。其中包括以下事实:存在数百种神经元,每种神经元都需要特殊的基因表达模式,进而需要特殊的染色质景观。此外,神经元具有任何细胞类型中最稳定的形态,这是记忆所必需的独特功能。然而,这些稳定的形态必须允许响应环境影响而出现新的稳定形态,从而允许通过改变的形态和新的突触形成进行学习。几年前,我们发现神经元具有特定的染色质重塑机制,而ATP依赖的染色质重塑复合物的组合组装所产生的任何其他细胞类型都不存在。神经特异性亚基对于正常的神经发育,学习和记忆至关重要。值得注意的是,在成纤维细胞中重建这些神经特异性复合物会导致它们转化为神经元。最近,已发现这些复合物的亚基在几种人类神经系统疾病中具有遗传优势。这些突变的遗传优势表明,不太严重的突变将导致人类神经元衍生性状的表型变异。

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  • 年(卷),期 -1(23),6
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  • 页码 003
  • 总页数 18
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