Phosphorylation of (Ser 291) in the linker insert of Syk negatively regulates ITAM signaling in platelets.

IF 2.5 3区 医学 Q3 CELL BIOLOGY
Platelets Pub Date : 2024-12-01 Epub Date: 2024-06-21 DOI:10.1080/09537104.2024.2369766
Carol Dangelmaier, Hymavathi Reddy Vari, Dhruv N Vajipayajula, Manal Elzoheiry, Monica Wright, Ashvin Iyer, Alexander Y Tsygankov, Satya P Kunapuli
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引用次数: 0

Abstract

Receptor-induced tyrosine phosphorylation of spleen tyrosine kinase (Syk) has been studied extensively in hematopoietic cells. Metabolic mapping and high-resolution mass spectrometry, however, indicate that one of the most frequently detected phosphorylation sites encompassed S297 (S291 in mice) located within the linker B region of Syk. It has been reported that Protein kinase C (PKC) phosphorylates Syk S297, thus influencing Syk activity. However, conflicting studies suggest that this phosphorylation enhances as well as reduces Syk activity. To clarify the function of this site, we generated Syk S291A knock-in mice. We used platelets as a model system as they possess Glycoprotein VI (GPVI), a receptor containing an immunoreceptor tyrosine-based activation motif (ITAM) which transduces signals through Syk. Our analysis of the homozygous mice indicated that the knock-in platelets express only one isoform of Syk, while the wild-type expresses two isoforms at 69 and 66 kDa. When the GPVI receptor was activated with collagen-related peptide (CRP), we observed an increase in functional responses and phosphorylations in Syk S291A platelets. This potentiation did not occur with AYPGKF or 2-MeSADP, although they also activate PKC isoforms. Although there was potentiation of platelet functional responses, there was no difference in tail bleeding times. However, the time to occlusion in the FeCl3 injury model was enhanced. These data indicate that the effects of Syk S291 phosphorylation represent a significant outcome on platelet activation and signaling in vitro but also reveals its multifaceted nature demonstrated by the differential effects on physiological responses in vivo.

Syk 连接插入物中的磷酸化(Ser 291)对血小板中的 ITAM 信号传导有负向调节作用。
在造血细胞中,受体诱导的脾酪氨酸激酶(Syk)酪氨酸磷酸化已被广泛研究。然而,代谢图谱和高分辨率质谱分析表明,最常检测到的磷酸化位点之一是位于 Syk 连接器 B 区的 S297(小鼠为 S291)。据报道,蛋白激酶 C(PKC)会使 Syk S297 磷酸化,从而影响 Syk 的活性。然而,相互矛盾的研究表明,这种磷酸化既能增强也能降低 Syk 的活性。为了明确该位点的功能,我们产生了 Syk S291A 基因敲入小鼠。我们使用血小板作为模型系统,因为它们具有糖蛋白VI(GPVI),这是一种含有基于免疫受体酪氨酸的激活基序(ITAM)的受体,它通过Syk传递信号。我们对同卵小鼠的分析表明,基因敲入型血小板只表达一种Syk异构体,而野生型血小板则表达69和66 kDa的两种异构体。当用胶原相关肽(CRP)激活 GPVI 受体时,我们观察到 Syk S291A 血小板的功能反应和磷酸化增加。虽然 AYPGKF 或 2-MeSADP 也能激活 PKC 同工酶,但它们并不能增强血小板的磷酸化。虽然血小板功能反应有增强作用,但尾部出血时间却没有差异。然而,氯化铁损伤模型的闭塞时间却延长了。这些数据表明,Syk S291 磷酸化对体外血小板活化和信号传导的影响是显著的,但同时也揭示了其多面性,这体现在对体内生理反应的不同影响上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Platelets
Platelets 医学-细胞生物学
CiteScore
6.70
自引率
3.00%
发文量
79
审稿时长
1 months
期刊介绍: Platelets is an international, peer-reviewed journal covering all aspects of platelet- and megakaryocyte-related research. Platelets provides the opportunity for contributors and readers across scientific disciplines to engage with new information about blood platelets. The journal’s Methods section aims to improve standardization between laboratories and to help researchers replicate difficult methods. Research areas include: Platelet function Biochemistry Signal transduction Pharmacology and therapeutics Interaction with other cells in the blood vessel wall The contribution of platelets and platelet-derived products to health and disease The journal publishes original articles, fast-track articles, review articles, systematic reviews, methods papers, short communications, case reports, opinion articles, commentaries, gene of the issue, and letters to the editor. Platelets operates a single-blind peer review policy. Authors can choose to publish gold open access in this journal.
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