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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Signal integration at the PI3K-p85-XBP1 hub endows coagulation protease activated protein C with insulin-like function
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Signal integration at the PI3K-p85-XBP1 hub endows coagulation protease activated protein C with insulin-like function

机译:PI3K-P85-XBP1枢纽的信号集成赋予胰岛素样功能的凝固蛋白酶活化蛋白C.

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摘要

Coagulation proteases have increasingly recognized functions beyond hemostasis and thrombosis. Disruption of activated protein C (aPC) or insulin signaling impair function of podocytes and ultimately cause dysfunction of the glomerular filtration barrier and diabetic kidney disease (DKD). We here show that insulin and aPC converge on a common spliced-X-box binding protein-1 (sXBP1) signaling pathway to maintain endoplasmic reticulum(ER) homeostasis. Analogous to insulin, physiological levels of aPCmaintain ER proteostasis in DKD. Accordingly, genetically impaired protein C activation exacerbates maladaptive ER response, whereas genetic or pharmacological restoration of aPC maintains ER proteostasis in DKD models. Importantly, in mice with podocyte-specific deficiency of insulin receptor (INSR), aPC selectively restores the activity of the cytoprotective ER-transcription factor sXBP1 by temporally targeting INSR downstream signaling intermediates, the regulatory subunits of PI3Kinase, p85a and p85b. Genomewide mapping of condition-specific XBP1-transcriptional regulatory patterns confirmed that concordant unfolded protein response target genes are involved inmaintenance of ER proteostasis by both insulin and aPC. Thus, aPC efficiently employs disengaged insulin signaling components to reconfigure ER signaling and restore proteostasis. These results identify ER reprogramming as a novel hormonelike function of coagulation proteases and demonstrate that targeting insulin signaling intermediates may be a feasible therapeutic approach ameliorating defective insulin signaling.
机译:凝血蛋白酶越来越多地认识到超出止血和血栓形成的功能。激活蛋白C(APC)的破坏或胰岛素信号损伤功能诱导孔细胞,最终引起肾小球过滤屏障和糖尿病肾病(DKD)的功能障碍。我们在此表明​​,胰岛素和APC会聚在普通的剪接-X箱结合蛋白-1(SXBP1)信号通路上,以保持内质网(ER)稳态。类似于胰岛素的胰岛素,DKD中APCAINTAIN ER蛋白质的生理水平。因此,遗传受损的蛋白质C活化加剧了不适的ER反应,而APC的遗传或药理学恢复在DKD模型中维持Er蛋白质。重要的是,在具有胰岛素受体(INSR)的小鼠缺陷的小鼠中,APC通过在时间上靶向INSR下游信号中间体,PI3kinase,P85a和P85b的调节亚基选择性地恢复细胞保护ER转录因子SXBP1的活性。特异性特异性XBP1转录调节模式的基因组映射证实,通过胰岛素和APC涉及ER蛋白质的一致性展开蛋白应答靶基因。因此,APC有效地使用脱离的胰岛素信号传导组件来重新配置ER信号和恢复蛋白质。这些结果鉴定了ER重新编程为凝固蛋白酶的新型激素仪函数,并证明靶向胰岛素信号中间体可以是改善缺陷胰岛素信号传导的可行治疗方法。

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    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Heidelberg Univ Dept Internal Med &

    Clin Chem 1 Heidelberg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

    Otto von Guericke Univ Inst Mol &

    Clin Immunol Magdeburg Germany;

    Univ Oklahoma Oklahoma Med Res Fdn Hlth Sci Ctr Dept Pathol Oklahoma City OK USA;

    Heidelberg Univ Dept Internal Med &

    Clin Chem 1 Heidelberg Germany;

    Rush Univ Dept Med Chicago IL 60612 USA;

    Tech Univ Dept Clin Pathobiochem Dresden Germany;

    Univ Med Ctr Mainz Ctr Thrombosis &

    Hemostasis Mainz Germany;

    Otto von Guericke Univ Inst Clin Chem &

    Pathobiochem Leipziger Str 44 D-39120 Magdeburg Germany;

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  • 正文语种 eng
  • 中图分类 血液及淋巴系疾病;
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