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首页> 外文期刊>Cellular Physiology and Biochemistry >Janus kinase 3 is expressed in erythrocytes, phosphorylated upon energy depletion and involved in the regulation of suicidal erythrocyte death
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Janus kinase 3 is expressed in erythrocytes, phosphorylated upon energy depletion and involved in the regulation of suicidal erythrocyte death

机译:Janus激酶3在红细胞中表达,能量消耗后被磷酸化,并参与自杀性红细胞死亡的调节

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Janus kinase 3, a tyrosine kinase expressed in haematopoetic tissues, plays a decisive role in T-lymphocyte survival. JAK3 deficiency leads to (Severe) Combined Immunodeficiency (SCID) resulting from enhanced lymphocyte apoptosis. JAK3 is activated by phosphorylation. Nothing is known about expression of JAK3 in erythrocytes, which may undergo apoptosis-like cell death (eryptosis) characterized by cell membrane scrambling with phosphatidylserine exposure and cell shrinkage. Triggers of eryptosis include energy depletion. The present study utilized immunohistochemistry and confocal microscopy to test for JAK3 expression and phosphorylation, and FACS analysis to determine phosphatidylserine exposure (annexin binding) and cell volume (forward scatter). As a result, JAK3 was expressed in erythrocytes and phosphorylated following 24h and 48h glucose depletion. Forward scatter was slightly but significantly smaller in erythrocytes from JAK3-deficient mice (jak3~(-/-)) than in erythrocytes from wild type mice (jak3~(+/+)). Annexin V binding was similarly low in both genotypes. The JAK3 inhibitors WHI-P131/JANEX-1 (4-(4′-Hydroxyphenyl)amino-6,7-dimethoxyquinazoline, 156μM) and WHI-P154 (4-[(3′-Bromo-4′-hydroxyphenyl)amino]-6,7- dimethoxyquinazoline, 11.2μM) did not significantly modify annexin V binding or forward scatter. Glucose depletion increased annexin V binding, an effect significantly blunted in jak3~(-/-) erythrocytes and in the presence of the JAK3 inhibitors. The observations disclose a completely novel role of Janus kinase 3, i.e. the triggering of cell membrane scrambling in energy depleted erythrocytes.
机译:Janus激酶3是在造血组织中表达的酪氨酸激酶,在T淋巴细胞的存活中起决定性作用。 JAK3缺乏症会导致淋巴细胞凋亡增强,从而导致(严重)合并免疫缺陷病(SCID)。 JAK3通过磷酸化激活。关于JAK3在红细胞中的表达还一无所知,红细胞可能经历凋亡样细胞死亡(加密),其特征在于细胞膜被磷脂酰丝氨酸暴露和细胞收缩所扰乱。加密的诱因包括能量消耗。本研究利用免疫组织化学和共聚焦显微镜测试JAK3的表达和磷酸化,并通过FACS分析确定磷脂酰丝氨酸的暴露量(annexin结合)和细胞体积(正向散射)。结果,JAK3在红细胞中表达,并在葡萄糖24小时和48小时耗尽后被磷酸化。缺乏JAK3的小鼠(jak3〜(-/-))的红细胞中的前向散射比野生型小鼠(jak3〜(+ / +))的前向散射稍小但明显更小。在两种基因型中膜联蛋白V的结合率相似地都较低。 JAK3抑制剂WHI-P131 / JANEX-1(4-(4'-羟基苯基)氨基-6,7-二甲氧基喹唑啉,156μM)和WHI-P154(4-[(3'-Bromo-4'-羟基苯基)氨基] -6,7-二甲氧基喹唑啉(11.2μM)没有显着改变膜联蛋白V的结合或正向散射。葡萄糖消耗增加了膜联蛋白V的结合,这种作用在jak3〜(-/-)红细胞中和存在JAK3抑制剂时明显减弱。这些发现揭示了Janus激酶3的完全新颖的作用,即在能量耗尽的红细胞中触发细胞膜加扰。

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