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Negative regulatory mechanisms underlying EPO receptor signaling and erythropoiesis.

机译:EPO受体信号转导和促红细胞生成的负调控机制。

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摘要

Erythropoietin (EPO) is the primary cytokine regulator of erythropoiesis. Fundamental to this action is the ability of EPO to bind the EPO receptor (EPO-R), and activate the primary associated tyrosine kinase, JAK2. The critical importance of EPO, EPO-R and JAK2 to erythropoiesis is demonstrated by the fatal embryonic anemia that develops upon EPO, EPO-R or JAK2 deletion. Positive regulation of intracellular signal transduction pathways downstream of EPO-R and JAK2 are well documented, but less is known about negative regulation of EPO-R signaling. Two distinct experimental strategies were utilized to examine a subset of the negative regulatory mechanisms underlying EPO-R signaling and erythropoiesis.;The discovery that EPO-R is ubiquitinated and degraded by the proteasome and lysosome led us to examine the role of EPO-R ubiquitination on signal transduction and proliferation. Lysine mutagenesis of EPO-R showed that K348, K388 and K428 were the primary ubiquitin acceptor sites when EPO-R mutants were expressed in HEK 293T cells. BaF3 cells expressing an EPO-R deficient in cytoplasmic lysines displayed diminished EPO-mediated EPO-R, JAK2, PKB and STAT5 phosphorylation and could not proliferate in response to EPO. The membrane proximal lysines of EPO-R, K256 and K276, were necessary for proliferation at physiologic EPO concentrations but were not required at saturating EPO concentrations. Single lysine EPO-R add-back mutants restored signaling and proliferation to BaF3 cells at physiologically elevated EPO concentrations, signifying that EPO-R lysines finely mediate EPO-dependent proliferation and signal transduction. These analyses demonstrate a positive regulatory role for lysines in signal transduction and proliferation.;Mice deficient in the E3 ubiquitin ligase, Cbl, were generated previously and displayed elevated platelet numbers, expansion of splenic red pulp and splenomegaly, suggesting that Cbl-/- mice have defects in megakaryocyte/erythrocyte progenitors or more committed cells of each lineage. Our studies illustrated that genetic ablation of Cbl resulted in elevated total numbers of Burst Forming Unit-Erythroid and Colony Forming Unit-Erythroid, but decreased bone marrow-derived late erythroblasts. Cbl-deficient late erythroblasts displayed elevated apoptosis, as well as increased expression of Foxo3a and increased mRNA levels of the pro-apoptotic genes, Bim and FasL. These studies implicate Cbl as an important negative regulator of multiple facets of erythroid signaling.
机译:促红细胞生成素(EPO)是促红细胞生成的主要细胞因子调节剂。此作用的基础是EPO结合EPO受体(EPO-R)并激活主要的酪氨酸激酶JAK2的能力。 EPO,EPO-R和JAK2对红细胞生成的至关重要性通过致命的胚胎性贫血得到证明,该致命性贫血是在EPO,EPO-R或JAK2缺失后发展而来的。 EPO-R和JAK2下游的细胞内信号转导途径的正向调控已有充分文献记载,但对EPO-R信号向负向调控的了解较少。利用两种不同的实验策略来检查EPO-R信号传导和促红细胞生成的负调控机制的子集。;发现EPO-R被蛋白酶体和溶酶体泛素化并降解,导致我们研究了EPO-R泛素化的作用信号转导和增殖。 EPO-R的赖氨酸诱变表明,当EPO-R突变体在HEK 293T细胞中表达时,K348,K388和K428是主要的泛素受体位点。表达缺乏胞质赖氨酸的EPO-R的BaF3细胞显示EPO介导的EPO-R,JAK2,PKB和STAT5磷酸化水平降低,并且不能响应EPO增殖。 EPO-R,K256和K276的膜近端赖氨酸是在生理EPO浓度下增殖所必需的,而在饱和EPO浓度下则不是必需的。单个赖氨酸EPO-R加回突变体在生理升高的EPO浓度下恢复了BaF3细胞的信号传导和增殖,这表明EPO-R赖氨酸能很好地介导EPO依赖性增殖和信号转导。这些分析证明了赖氨酸在信号转导和增殖中具有积极的调节作用。; E3泛素连接酶Cbl缺陷的小鼠先前产生并显示出升高的血小板数量,脾脏红髓和脾肿大,提示Cbl-/-小鼠在每个细胞系的巨核细胞/红细胞祖细胞或更多定型细胞中都有缺陷。我们的研究表明,Cbl的基因消融导致爆裂形成单位-类红细胞和菌落形成单位-类红细胞总数增加,但骨髓来源的晚期成红细胞减少。 Cbl缺陷型晚期成红细胞显示出凋亡增加,Foxo3a表达增加,促凋亡基因Bim和FasL的mRNA水平增加。这些研究暗示Cbl是红系信号传导多个方面的重要负调节剂。

著录项

  • 作者

    Richmond, Terri.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Biology Molecular.;Biophysics General.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 225 p.
  • 总页数 225
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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