首页> 美国卫生研究院文献>Cell Regulation >Regulation of nuclear–cytoplasmic shuttling and function of Family with sequence similarity 13 member A (Fam13a) by B56-containing PP2As and Akt
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Regulation of nuclear–cytoplasmic shuttling and function of Family with sequence similarity 13 member A (Fam13a) by B56-containing PP2As and Akt

机译:序列相似性13成员A(Fam13a)通过含B56的PP2As和Akt对核-胞质穿梭和家族功能的调控

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摘要

Recent genome-wide association studies reveal that the FAM13A gene is associated with human lung function and a variety of lung diseases, including chronic obstructive pulmonary disease, asthma, lung cancer, and pulmonary fibrosis. The biological functions of Fam13a, however, have not been studied. In an effort to identify novel substrates of B56-containing PP2As, we found that B56-containing PP2As and Akt act antagonistically to control reversible phosphorylation of Fam13a on Ser-322. We show that Ser-322 phosphorylation acts as a molecular switch to control the subcellular distribution of Fam13a. Fam13a shuttles between the nucleus and cytoplasm. When Ser-322 is phosphorylated by Akt, the binding between Fam13a and 14-3-3 is enhanced, leading to cytoplasmic sequestration of Fam13a. B56-containing PP2As dephosphorylate phospho–Ser-322 and promote nuclear localization of Fam13a. We generated Fam13a-knockout mice. Fam13a-mutant mice are viable and healthy, indicating that Fam13a is dispensable for embryonic development and physiological functions in adult animals. Intriguingly, Fam13a has the ability to activate the Wnt pathway. Although Wnt signaling remains largely normal in Fam13a-knockout lungs, depletion of Fam13a in human lung cancer cells causes an obvious reduction in Wnt signaling activity. Our work provides important clues to elucidating the mechanism by which Fam13a may contribute to human lung diseases.
机译:最近的全基因组关联研究表明,FAM13A基因与人类肺功能和多种肺部疾病相关,包括慢性阻塞性肺疾病,哮喘,肺癌和肺纤维化。但是,尚未研究Fam13a的生物学功能。为了鉴定含B56的PP2As的新型底物,我们发现含B56的PP2As和Akt具有拮抗作用,以控制Fam13a在Ser-322上的可逆磷酸化。我们表明,Ser-322磷酸化充当控制Fam13a亚细胞分布的分子开关。 Fam13a在细胞核和细胞质之间穿梭。当Ser-322被Akt磷酸化时,Fam13a和14-3-3之间的结合增强,导致Fam13a的细胞质隔离。含B56的PP2As使磷酸化Ser-322脱磷酸并促进Fam13a的核定位。我们生成了Fam13a基因敲除小鼠。 Fam13a突变小鼠是有活力且健康的,这表明Fam13a对于成年动物的胚胎发育和生理功能是必不可少的。有趣的是,Fam13a具有激活Wnt途径的能力。尽管Wnt信号在Fam13a敲除的肺中仍基本正常,但人肺癌细胞中Fam13a的消耗会导致Wnt信号活性明显降低。我们的工作为阐明Fam13a可能导致人类肺部疾病的机制提供了重要线索。

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