作者
Marco Preußner, Gesine Goldammer, Alexander Neumann, Tom Haltenhof, Pia Rautenstrauch, Michaela Müller-McNicoll, Florian Heyd
发表日期
2017/8/3
期刊
Molecular cell
卷号
67
期号
3
页码范围
433-446. e4
出版商
Elsevier
简介
The core body temperature of all mammals oscillates with the time of the day. However, direct molecular consequences of small, physiological changes in body temperature remain largely elusive. Here we show that body temperature cycles drive rhythmic SR protein phosphorylation to control an alternative splicing (AS) program. A temperature change of 1°C is sufficient to induce a concerted splicing switch in a large group of functionally related genes, rendering this splicing-based thermometer much more sensitive than previously described temperature-sensing mechanisms. AS of two exons in the 5′ UTR of the TATA-box binding protein (Tbp) highlights the general impact of this mechanism, as it results in rhythmic TBP protein levels with implications for global gene expression in vivo. Together our data establish body temperature-driven AS as a core clock-independent oscillator in mammalian peripheral clocks.
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