The post-mitotic state in neurons correlates with a stable nuclear higher-order structure

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Abstract

Neurons become terminally differentiated (TD) post-mitotic cells very early during development yet they may remain alive and functional for decades. TD neurons preserve the molecular machinery necessary for DNA synthesis that may be reactivated by different stimuli but they never complete a successful mitosis. The non-reversible nature of the post-mitotic state in neurons suggests a non-genetic basis for it since no set of mutations has been able to revert it. Comparative studies of the nuclear higherorder structure in neurons and cells with proliferating potential suggest that the non-reversible nature of the post-mitotic state in neurons has a structural basis in the stability of the nuclear higher-order structure. © 2012 Landes Bioscience.

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APA

Aranda-Anzaldo, A. (2012, March). The post-mitotic state in neurons correlates with a stable nuclear higher-order structure. Communicative and Integrative Biology. https://doi.org/10.4161/cib.18761

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