Wasserman Gregory A, Szymaniak Aleksander D, Hinds Anne C, Yamamoto Kazuko, Kamata Hirofumi, Smith Nicole Ms, Hilliard Kristie L, Carrieri Claudia, Labadorf Adam T, Quinton Lee J, Ai Xingbin, Varelas Xaralabos, Chen Felicia, Mizgerd Joseph P, Fine Alan, O'Carroll Dónal, Jones Matthew R
The Pulmonary Center.
Department of Medicine.
J Clin Invest. 2017 Oct 2;127(10):3866-3876. doi: 10.1172/JCI94639. Epub 2017 Sep 18.
P-element-induced wimpy testes (Piwi) proteins are known for suppressing retrotransposon activation in the mammalian germline. However, whether Piwi protein or Piwi-dependent functions occur in the mammalian soma is unclear. Contrary to germline-restricted expression, we observed that Piwi-like Miwi2 mRNA is indeed expressed in epithelial cells of the lung in adult mice and that it is induced during pneumonia. Further investigation revealed that MIWI2 protein localized to the cytoplasm of a discrete population of multiciliated airway epithelial cells. Isolation and next-generation sequencing of MIWI2-positive multiciliated cells revealed that they are phenotypically distinct from neighboring MIWI2-negative multiciliated cells. Mice lacking MIWI2 exhibited an altered balance of airway epithelial cells, demonstrating fewer multiciliated cells and an increase in club cells. During pneumococcal pneumonia, Miwi2-deficient mice exhibited increased expression of inflammatory mediators and increased immune cell recruitment, leading to enhanced bacterial clearance. Taken together, our data delineate MIWI2-dependent functions outside of the germline and demonstrate the presence of distinct subsets of airway multiciliated cells that can be discriminated by MIWI2 expression. By demonstrating roles for MIWI2 in airway cell identity and pulmonary innate immunity, these studies elucidate unanticipated physiological functions for Piwi proteins in somatic tissues.
P 因子诱导的弱精睾丸(Piwi)蛋白以抑制哺乳动物生殖系中的逆转录转座子激活而闻名。然而,Piwi 蛋白或 Piwi 依赖性功能是否在哺乳动物体细胞中发生尚不清楚。与生殖系限制性表达相反,我们观察到成年小鼠肺上皮细胞中确实表达了 Piwi 样 Miwi2 mRNA,并且在肺炎期间其表达会被诱导。进一步研究发现,MIWI2 蛋白定位于离散的多纤毛气道上皮细胞群体的细胞质中。对 MIWI2 阳性多纤毛细胞进行分离和二代测序显示,它们在表型上与相邻的 MIWI2 阴性多纤毛细胞不同。缺乏 MIWI2 的小鼠气道上皮细胞平衡发生改变,多纤毛细胞数量减少,棒状细胞增加。在肺炎球菌肺炎期间,Miwi2 缺陷小鼠炎症介质表达增加,免疫细胞募集增多,导致细菌清除增强。综上所述,我们的数据描绘了 MIWI2 在生殖系之外的依赖性功能,并证明存在可通过 MIWI2 表达区分的气道多纤毛细胞不同亚群。通过证明 MIWI2 在气道细胞特性和肺部固有免疫中的作用,这些研究阐明了 Piwi 蛋白在体细胞组织中意想不到的生理功能。