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Replication-dependent histone genes are actively transcribed in differentiating and aging retinal neurons.


ABSTRACT: In the mammalian genome, each histone family contains multiple replication-dependent paralogs, which are found in clusters where their transcription is thought to be coupled to the cell cycle. Here, we wanted to interrogate the transcriptional regulation of these paralogs during retinal development and aging. We employed deep sequencing, quantitative PCR, in situ hybridization (ISH), and microarray analysis, which revealed that replication-dependent histone genes were not only transcribed in progenitor cells but also in differentiating neurons. Specifically, by ISH analysis we found that different histone genes were actively transcribed in a subset of neurons between postnatal day 7 and 14. Interestingly, within a histone family, not all paralogs were transcribed at the same level during r

SUBMITTER: Banday AR 

PROVIDER: S-EPMC4614993 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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