Data Sheet 1_Disruption of Swell1/VRAC function impairs initial hemodynamics and activates compensatory leukotriene signaling in zebrafish circulation development.pdf
收藏NIAID Data Ecosystem2026-05-10 收录
下载链接:
https://figshare.com/articles/dataset/Data_Sheet_1_Disruption_of_Swell1_VRAC_function_impairs_initial_hemodynamics_and_activates_compensatory_leukotriene_signaling_in_zebrafish_circulation_development_pdf/31109407
下载链接
链接失效反馈官方服务:
资源简介:
BackgroundVolume-regulated anion channels (VRACs) maintain cell-volume homeostasis, and SWELL1 is their essential subunit. Here, we show that VRAC/Swell1 also regulates initial hemodynamics and vascular development in zebrafish.
ResultsStable swell1a and swell1b mutant zebrafish lines were established. In SWELL1- KO HAP1 cells, VRAC currents were rescued by wild-type, but not mutant, zebrafish swell1a or swell1b cDNA, confirming the alleles' loss-of-function nature. Microangiography and Tg(fli1a:eGFP) imaging revealed hypovolemia, reduced flow, and delayed vessel sprouting by 30 hpf, with severity proportional to allele dosage and partial recovery by 72 hpf. Whole-embryo transcriptomics highlighted upregulation of arachidonic-acid metabolism, especially the 5- lipoxygenase (5LO) axis. Pharmacological 5LO inhibition or the receptor cyslt1r knockdown aggravated circulatory defects, whereas leukotriene C4 treatment improved hemodynamics, indicating compensatory 5LO signalling. Thus, Swell1-dependent VRAC activity underpins embryonic hemodynamic stability, and 5LO-derived mediators partially buffer its loss.
ConclusionThese findings link ion-channel function to lipid signalling in vascular development and suggest VRAC/Swell1-5LO cross-talk as a therapeutic target for blood-flow disorders.
创建时间:
2026-01-21



