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Piezo1-Regulated Mechanotransduction Controls Flow-Activated Lymphatic Expansion

压电1 淋巴管内皮 机械转化 细胞生物学 淋巴系统 生物 口腔1 泛素连接酶 下调和上调 KLF2 免疫学 机械敏感通道 泛素 受体 离子通道 遗传学 刺激1 内质网 基因
作者
Dongwon Choi,Eunkyung Park,Roy P. Yu,Michael N. Cooper,Il‐Taeg Cho,Joshua Choi,James Yu,Luping Zhao,Ji-Eun Irene Yum,Jin Suh Yu,Brandon Nakashima,Sunju Lee,Young Jin Seong,Jiao Wan,Chester J. Koh,Peter Bałuk,Donald M. McDonald,Sindhu Saraswathy,Jong Yeon Lee,Noo Li Jeon,Zhenqian Zhang,Alex S. Huang,Bin Zhou,Alex K. Wong,Young‐Kwon Hong
出处
期刊:Circulation Research [Ovid Technologies (Wolters Kluwer)]
卷期号:131 (2) 被引量:29
标识
DOI:10.1161/circresaha.121.320565
摘要

Background: Mutations in PIEZO1 (Piezo type mechanosensitive ion channel component 1) cause human lymphatic malformations. We have previously uncovered an ORAI1 (ORAI calcium release-activated calcium modulator 1)-mediated mechanotransduction pathway that triggers lymphatic sprouting through Notch downregulation in response to fluid flow. However, the identity of its upstream mechanosensor remains unknown. This study aimed to identify and characterize the molecular sensor that translates the flow-mediated external signal to the Orai1-regulated lymphatic expansion. Methods: Various mutant mouse models, cellular, biochemical, and molecular biology tools, and a mouse tail lymphedema model were employed to elucidate the role of Piezo1 in flow-induced lymphatic growth and regeneration. Results: Piezo1 was found to be abundantly expressed in lymphatic endothelial cells. Piezo1 knockdown in cultured lymphatic endothelial cells inhibited the laminar flow-induced calcium influx and abrogated the flow-mediated regulation of the Orai1 downstream genes, such as KLF2 (Krüppel-like factor 2), DTX1 (Deltex E3 ubiquitin ligase 1), DTX3L (Deltex E3 ubiquitin ligase 3L,) and NOTCH1 (Notch receptor 1), which are involved in lymphatic sprouting. Conversely, stimulation of Piezo1 activated the Orai1-regulated mechanotransduction in the absence of fluid flow. Piezo1-mediated mechanotransduction was significantly blocked by Orai1 inhibition, establishing the epistatic relationship between Piezo1 and Orai1. Lymphatic-specific conditional Piezo1 knockout largely phenocopied sprouting defects shown in Orai1- or Klf2- knockout lymphatics during embryo development. Postnatal deletion of Piezo1 induced lymphatic regression in adults. Ectopic Dtx3L expression rescued the lymphatic defects caused by Piezo1 knockout, affirming that the Piezo1 promotes lymphatic sprouting through Notch downregulation. Consistently, transgenic Piezo1 expression or pharmacological Piezo1 activation enhanced lymphatic sprouting. Finally, we assessed a potential therapeutic value of Piezo1 activation in lymphatic regeneration and found that a Piezo1 agonist, Yoda1, effectively suppressed postsurgical lymphedema development. Conclusions: Piezo1 is an upstream mechanosensor for the lymphatic mechanotransduction pathway and regulates lymphatic growth in response to external physical stimuli. Piezo1 activation presents a novel therapeutic opportunity for preventing postsurgical lymphedema. The Piezo1-regulated lymphangiogenesis mechanism offers a molecular basis for Piezo1-associated lymphatic malformation in humans.
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