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Foxi1通过转录和表观遗传机制调控黏液纤毛发育和离子细胞特化的多个步骤。

Foxi1 regulates multiple steps of mucociliary development and ionocyte specification through transcriptional and epigenetic mechanisms.

作者信息

Bowden Sarah, Brislinger-Engelhardt Magdalena Maria, Hansen Mona, Temporal-Plo Africa, Weber Damian, Hägele Sandra, Lorenz Fabian, Litwin Tim, Kreutz Clemens, Walentek Peter

机构信息

Internal Medicine IV, Medical Center - University of Freiburg, Hugstetter Strasse 55, 79106 Freiburg, Germany.

CIBSS Centre for Integrative Biological Signalling Studies, University of Freiburg, Schänzlestrasse 18, 79104 Freiburg, Germany.

出版信息

bioRxiv. 2024 Nov 4:2024.10.27.620464. doi: 10.1101/2024.10.27.620464.

Abstract

Foxi1 is a master regulator of ionocytes (ISCs / INCs) across species and organs. Two subtypes of ISCs exist, and both α- and β-ISCs regulate pH- and ion-homeostasis in epithelia. Gain and loss of FOXI1 function are associated with human diseases, including Pendred syndrome, male infertility, renal acidosis and cancers. Foxi1 functions were predominantly studied in the context of ISC specification, however, reports indicate additional functions in early and ectodermal development. Here, we re-investigated the functions of Foxi1 in embryonic mucociliary epidermis development and found a novel function for Foxi1 in the generation of Notch-ligand expressing mucociliary multipotent progenitors (MPPs). We demonstrate that Foxi1 has multiple concentration-dependent functions: At low levels, Foxi1 confers ectodermal competence through transcriptional and epigenetic mechanisms, while at high levels, Foxi1 induces a multi-step process of ISC specification and differentiation. We further describe how expression is affected through auto- and Notch-regulation, how Ubp1 and Dmrt2 regulate ISC subtype differentiation, and how this developmental program affects Notch signaling as well as mucociliary patterning. Together, we reveal novel functions for Foxi1 in mucociliary epidermis formation, relevant to our understanding of vertebrate development and human disease.

摘要

叉头框I1(Foxi1)是跨物种和器官的离子细胞(ISC/INC)的主要调节因子。存在两种ISC亚型,α-ISC和β-ISC均可调节上皮细胞的pH值和离子稳态。FOXI1功能的获得和丧失与人类疾病相关,包括彭德莱德综合征、男性不育、肾性酸中毒和癌症。Foxi1的功能主要是在ISC特化的背景下进行研究的,然而,有报道表明它在早期和外胚层发育中还有其他功能。在这里,我们重新研究了Foxi1在胚胎黏液纤毛表皮发育中的功能,发现了Foxi1在产生表达Notch配体的黏液纤毛多能祖细胞(MPP)中的新功能。我们证明Foxi1具有多种浓度依赖性功能:在低水平时,Foxi1通过转录和表观遗传机制赋予外胚层能力,而在高水平时,Foxi1诱导ISC特化和分化的多步骤过程。我们进一步描述了其表达如何通过自身调节和Notch调节受到影响,Ubp1和Dmrt2如何调节ISC亚型分化,以及这个发育程序如何影响Notch信号传导以及黏液纤毛模式。总之,我们揭示了Foxi1在黏液纤毛表皮形成中的新功能,这与我们对脊椎动物发育和人类疾病的理解相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7aa2/11533974/124fc927d39c/nihpp-2024.10.27.620464v2-f0001.jpg

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