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定量磷酸化蛋白质组学揭示了 DYRK1 介导的离子转运和细胞连接相关蛋白磷酸化对文昌鱼脊索管腔发生的需求。

Quantitative Phosphoproteomics Reveals the Requirement of DYRK1-Mediated Phosphorylation of Ion Transport- and Cell Junction-Related Proteins for Notochord Lumenogenesis in Ascidian.

机构信息

Fang Zongxi Center, MoE Key Laboratory of Marine Genetics and Breeding, College of Marine Life Sciences, Ocean University of China, Qingdao 266003, China.

Laoshan Laboratory, Qingdao 266237, China.

出版信息

Cells. 2023 Mar 16;12(6):921. doi: 10.3390/cells12060921.

Abstract

The dual-specificity tyrosine phosphorylation-regulated kinase (DYRK1) phosphorylates diverse substrates involved in various cellular processes. Here, we found that blocking the kinase activity of DYRK1 inhibited notochord development and lumenogenesis in ascidian . By performing phosphoproteomics in conjunction with notochord-specific proteomics, we identified 1065 notochord-specific phosphoproteins that were present during lumen inflation, of which 428 differentially phosphorylated proteins (DPPs) were identified after inhibition of DYRK1 kinase activity. These DPPs were significantly enriched in metal ion transmembrane transporter activity, protein transport and localization, and tight junction. We next analyzed the downregulated phosphoproteins and focused on those belonging to the solute carrier (SLC), Ras-related protein (RAB), and tight junction protein (TJP) families. In vivo phospho-deficient study showed that alanine mutations on the phosphosites of these proteins resulted in defects of lumenogenesis during notochord development, demonstrating the crucial roles of phosphorylation of transmembrane transport-, vesicle trafficking-, and tight junction-related proteins in lumen formation. Overall, our study provides a valuable data resource for investigating notochord lumenogenesis and uncovers the molecular mechanisms of DYRK1-mediated notochord development and lumen inflation.

摘要

双特异性酪氨酸磷酸化调节激酶(DYRK1)磷酸化多种参与各种细胞过程的底物。在这里,我们发现抑制 DYRK1 的激酶活性会抑制文昌鱼的脊索发育和管腔形成。通过与脊索特异性蛋白质组学联合进行磷酸蛋白质组学分析,我们鉴定出 1065 种在管腔膨胀过程中存在的脊索特异性磷酸蛋白,其中 428 种差异磷酸化蛋白(DPP)在抑制 DYRK1 激酶活性后被鉴定出来。这些 DPPs 在金属离子跨膜转运体活性、蛋白质运输和定位以及紧密连接中显著富集。接下来,我们分析了下调的磷酸化蛋白,并集中研究了属于溶质载体(SLC)、Ras 相关蛋白(RAB)和紧密连接蛋白(TJP)家族的那些蛋白。体内磷酸化缺陷研究表明,这些蛋白的磷酸化位点上的丙氨酸突变导致脊索发育过程中的管腔形成缺陷,表明跨膜运输、囊泡运输和紧密连接相关蛋白的磷酸化在管腔形成中起着至关重要的作用。总的来说,我们的研究为研究脊索管腔发生提供了有价值的数据资源,并揭示了 DYRK1 介导的脊索发育和管腔膨胀的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0356/10047359/b16bcc617cc7/cells-12-00921-g001.jpg

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