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The scale of zebrafish pectoral fin buds is determined by intercellular K+ levels and consequent Ca2+-mediated signaling via retinoic acid regulation of Rcan2 and Kcnk5b

PLoS Biol. 2024-03; 
Xiaowen Jiang, Kun Zhao, Yi Sun, Xinyue Song, Chao Yi, Tianlong Xiong, Sen Wang, Yi Yu, Xiduo Chen, Run Liu, Xin Yan, Christopher L Antos
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GenCrispr Cas9 Genome Editing The first exon in kcnk5b was targeted by the sgRNA sequence 50-TGCGATATTCCA AATCCTCG-30 and 50-GGTCTTGGGCGAAATTATTG-30 ordered by IDT with Alt-R gRNA modification, and 1 μl sgRNAs (400 ng/μl) and Cas9 (500 ng/μl) protein (Genscript, Cat. #Z03469) were co-injected into single-cell zebrafish embryos. Get A Quote

摘要

K+ channels regulate morphogens to scale adult fins, but little is known about what regulates the channels and how they control morphogen expression. Using the zebrafish pectoral fin bud as a model for early vertebrate fin/limb development, we found that K+ channels also scale this anatomical structure, and we determined how one K+-leak channel, Kcnk5b, integrates into its developmental program. From FLIM measurements of a Förster Resonance Energy Transfer (FRET)-based K+ sensor, we observed coordinated decreases in intracellular K+ levels during bud growth, and overexpression of K+-leak channels in vivo coordinately increased bud proportions. Retinoic acid, which can enhance fin/limb bud growth, decreased K+ ... More

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