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E-MTAB-13083 RNA-seq of coding RNA Mus musculus, Mus musculus

The clock transcription factor BMAL1 is a key regulator of extracellular matrix homeostasis and cell fate in the intervertebral disc

·发布 2023年8月17日
30
样本数
30
实验数
实验描述

The circadian clock in mammals temporally coordinates physiological and behavioural processes to anticipate daily rhythmic changes in their environment. Chronic disruption to circadian rhythms (e.g., through ageing or shift work) is thought to contribute to a multitude of diseases, including degeneration of the musculoskeletal system. The intervertebral disc (IVD) in the spine contains circadian clocks which control ~6% of the transcriptome in a rhythmic manner, including key genes involved in extracellular matrix (ECM) homeostasis. However, it remains largely unknown to what extent the local IVD molecular clock is required to drive rhythmic gene transcription and IVD physiology. In this work, we identified profound age-related changes of ECM microarchitecture and an endochondral ossification-like phenotype in the annulus fibrosus (AF) region of the IVD in the Col2a1-Bmal1 knockout mice. Reported here is the circadian time series RNA-Seq of the whole IVD in Bmal1 knockout mice.

样本属性
Organism
Mus musculus
Strain
C57BL/6J PER2::Luc
Age
2 to 3
Developmental stage
adult
Disease
normal
Organism part
annulus fibrosus, lumbar intervertebral disc
Genotype
Bmal1 KO, wild type genotype
Individual
1, 10, 11, ... 27 other values
实验信息
登记号
E-MTAB-13083
实验类型
RNA-seq of coding RNA
物种
Mus musculus, Mus musculus
发布日期
2023年8月17日
提交者
Leo Zeef
分析服务
分析服务

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