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NOD/Lt小鼠中巨噬细胞发育和成熟异常背后的造血干细胞缺陷:细胞因子受体和蛋白激酶C的调节缺陷

Hematopoietic stem-cell defects underlying abnormal macrophage development and maturation in NOD/Lt mice: defective regulation of cytokine receptors and protein kinase C.

作者信息

Serreze D V, Gaedeke J W, Leiter E H

机构信息

Jackson Laboratory, Bar Harbor, ME 04609.

出版信息

Proc Natl Acad Sci U S A. 1993 Oct 15;90(20):9625-9. doi: 10.1073/pnas.90.20.9625.

Abstract

The immunopathogenesis of autoimmune insulin-dependent diabetes in NOD mice entails defects in the development of macrophages (M phi s) from hematopoietic precursors. The present study analyzes the cellular and molecular basis underlying our previous finding that the Mø growth factor colony-stimulating factor 1 (CSF-1) promotes a reduced level of promonocyte proliferation and M phi development from NOD bone marrow. CSF-1 stimulation of NOD marrow induced Møs to differentiate to the point that they secreted levels of tumor necrosis factor alpha equivalent to that of controls. However, CSF-1 failed to prime NOD M phi s to completely differentiate in response to gamma-interferon, as shown by their decreased lipopolysaccharide-stimulated interleukin 1 secretion. These defects, in turn, were associated with an inability of CSF-1 to up-regulate c-fms (CSF-1 receptor) and Ifgr (gamma-interferon receptor) expression. Even though the combination of CSF-1 and gamma-interferon up-regulated c-fms and Ifgr transcript levels in NOD M phi s to levels induced in control M phi s by CSF-1 alone, the protein kinase C activities coupled to these receptors remained 4-fold lower in NOD M phi s than in M phi s derived from the marrow of diabetes-resistant NON and SWR control mice. Despite expressing the diabetogenic H-2g7 haplotype, M phi s derived from cytokine-stimulated marrow of the NON.H-2g7 congenic stock were functionally more mature than similarly derived M phi s from NOD mice. Whereas diabetes resistance was abrogated in 67% of irradiated (NOD x NON)F1 females reconstituted with NOD marrow, no recipients became diabetic after reconstitution with a 1:1 mixture of marrow from NOD and the congenic stock. Thus, failure to develop functionally mature monocytes may be of pathogenic significance in NOD mice.

摘要

非肥胖糖尿病(NOD)小鼠自身免疫性胰岛素依赖型糖尿病的免疫发病机制涉及造血前体细胞来源的巨噬细胞(Mφs)发育缺陷。本研究分析了我们之前发现的细胞和分子基础,即Mø生长因子集落刺激因子1(CSF-1)促进NOD骨髓中前单核细胞增殖水平降低以及Mφ发育。CSF-1刺激NOD骨髓诱导Møs分化至其分泌的肿瘤坏死因子α水平与对照组相当。然而,如脂多糖刺激的白细胞介素1分泌减少所示,CSF-1未能使NOD Mφs对γ干扰素完全分化作出反应。这些缺陷反过来又与CSF-1无法上调c-fms(CSF-1受体)和Ifgr(γ干扰素受体)表达有关。尽管CSF-1和γ干扰素联合上调了NOD Mφs中c-fms和Ifgr转录水平至单独CSF-1诱导对照Mφs中的水平,但与这些受体偶联的蛋白激酶C活性在NOD Mφs中仍比源自抗糖尿病的NON和SWR对照小鼠骨髓的Mφs低4倍。尽管表达致糖尿病的H-2g7单倍型,但源自细胞因子刺激的NON.H-2g7同源品系骨髓的Mφs在功能上比源自NOD小鼠的类似Mφs更成熟。在用NOD骨髓重建的67%辐照(NOD×NON)F1雌性小鼠中糖尿病抗性被消除,而在用NOD和同源品系1:1混合骨髓重建后没有受体发生糖尿病。因此,未能发育出功能成熟的单核细胞可能在NOD小鼠中具有致病意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b966/47622/ca193a4e6c6d/pnas01527-0402-a.jpg

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