JRK 与卫星 III DNA 结合,是热休克反应所必需的。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-07-01 DOI:10.1002/cbin.12216
Rosalie Waldron, Maria de los Angeles Becerra Rodriguez, John M. Williams, Zhenfei Ning, Abrar Ahmed, Andrew Lindsay, Tom Moore
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引用次数: 0

摘要

JRK 是转座子 pogo 超家族中的一种 DNA 结合蛋白,其中包括众所周知的中心粒结合蛋白 B(CENP-B)。Jrk 空值小鼠表现出癫痫、生长和生殖障碍,这与它在大脑和生殖组织中相对较高的表达量是一致的。人类 JRK DNA 变异和基因表达水平与癌症和神经精神疾病有关。JRK 蛋白能调节β-catenin-TCF 的活性,但对其细胞功能却知之甚少。根据其与 CENP-B 的同源性,我们确定了 JRK 是否与中心粒或其他卫星 DNA 结合。我们发现人类 JRK 能结合卫星 III DNA,这种 DNA 大量存在于染色体 9q12 的并心区和 Yq12 上,这两个地方都是核应激体组装的场所。在 HeLa 细胞中过表达的人类 JRK-GFP 会强烈定位在 9q12 上。使用抗 JRK 抗血清,我们发现内源性 JRK 与非应激细胞中的中心粒亚群共定位,并在热休克后与热休克因子 1 共定位。在 HeLa 细胞中敲除 JRK 会相应减少热休克细胞中热休克蛋白基因的表达。JRK在调节热休克反应中的作用与小鼠Jrk无效表型一致,并表明人类JRK可能是细胞应激成分疾病的调节因子。
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JRK binds satellite III DNA and is necessary for the heat shock response

JRK is a DNA-binding protein of the pogo superfamily of transposons, which includes the well-known centromere binding protein B (CENP-B). Jrk null mice exhibit epilepsy, and growth and reproductive disorders, consistent with its relatively high expression in the brain and reproductive tissues. Human JRK DNA variants and gene expression levels are implicated in cancers and neuropsychiatric disorders. JRK protein modulates β-catenin–TCF activity but little is known of its cellular functions. Based on its homology to CENP-B, we determined whether JRK binds centromeric or other satellite DNAs. We show that human JRK binds satellite III DNA, which is abundant at the chromosome 9q12 juxtacentromeric region and on Yq12, both sites of nuclear stress body assembly. Human JRK-GFP overexpressed in HeLa cells strongly localises to 9q12. Using an anti-JRK antiserum we show that endogenous JRK co-localises with a subset of centromeres in non-stressed cells, and with heat shock factor 1 following heat shock. Knockdown of JRK in HeLa cells proportionately reduces heat shock protein gene expression in heat-shocked cells. A role for JRK in regulating the heat shock response is consistent with the mouse Jrk null phenotype and suggests that human JRK may act as a modifier of diseases with a cellular stress component.

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7.20
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4.30%
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567
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