Caenorhabditis elegans HSF-1 is an essential nuclear protein that forms stress granule-like structures following heat shock

被引:79
|
作者
Morton, Elizabeth A. [1 ,2 ]
Lamitina, Todd [1 ,2 ]
机构
[1] Univ Penn, Dept Physiol, Perelman Sch Med, Philadelphia, PA 19104 USA
[2] Univ Penn, Program Genet & Gene Regulat, Grad Grp Cellular & Mol Biol, Philadelphia, PA 19104 USA
关键词
aging; heat shock factor; longevity; TRANSCRIPTION FACTOR; DNA-BINDING; LIFE-SPAN; FACTOR-I; FACTOR-1; OLIGOMERIZATION; RELOCALIZATION; ACTIVATION; LONGEVITY; CELLS;
D O I
10.1111/acel.12024
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The heat shock transcription factor (HSF) is a conserved regulator of heat shock-inducible gene expression. Organismal roles for HSF in physiological processes such as development, aging, and immunity have been defined largely through studies of the single Caenorhabditis elegans HSF homolog, hsf-1. However, the molecular and cell biological properties of hsf-1 in C. elegans are incompletely understood. We generated animals expressing physiological levels of an HSF-1::GFP fusion protein and examined its function, localization, and regulation in vivo. HSF-1::GFP was functional, as measured by its ability to rescue phenotypes associated with two hsf-1 mutant alleles. Rescue of hsf-1 development phenotypes was abolished in a DNA-binding-deficient mutant, demonstrating that the transcriptional targets of hsf-1 are critical to its function even in the absence of stress. Under nonstress conditions, HSF-1::GFP was found primarily in the nucleus. Following heat shock, HSF-1::GFP rapidly and reversibly redistributed into dynamic, subnuclear structures that share many properties with human nuclear stress granules, including colocalization with markers of active transcription. Rapid formation of HSF-1 stress granules required HSF-1 DNA-binding activity, and the threshold for stress granule formation was altered by growth temperature. HSF-1 stress granule formation was not induced by inhibition of IGF signaling, a pathway previously suggested to function upstream of hsf-1. Our findings suggest that development, stress, and aging pathways may regulate HSF-1 function in distinct ways, and that HSF-1 nuclear stress granule formation is an evolutionarily conserved aspect of HSF-1 regulation in vivo.
引用
收藏
页码:112 / 120
页数:9
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