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分析 Nkx3.1:Cre 驱动的 Erk5 缺失揭示了一种深刻的脊柱畸形,这与破骨细胞活性增加有关。

Analysis of Nkx3.1:Cre-driven Erk5 deletion reveals a profound spinal deformity which is linked to increased osteoclast activity.

机构信息

Institute of Cancer Sciences, College of Medical, Veterinary and Life Sciences, University of Glasgow, Bearsden, Glasgow, G61 1BD, UK.

Beatson Institute for Cancer Research, Bearsden, Glasgow, G61 1BD, UK.

出版信息

Sci Rep. 2017 Oct 16;7(1):13241. doi: 10.1038/s41598-017-13346-8.

Abstract

Extracellular signal-regulated protein kinase 5 (ERK5) has been implicated during development and carcinogenesis. Nkx3.1-mediated Cre expression is a useful strategy to genetically manipulate the mouse prostate. While grossly normal at birth, we observed an unexpected phenotype of spinal protrusion in Nkx3.1:Cre;Erk5 (Erk5 ) mice by ~6-8 weeks of age. X-ray, histological and micro CT (µCT) analyses showed that 100% of male and female Erk5 mice had a severely deformed curved thoracic spine, with an associated loss of trabecular bone volume. Although sex-specific differences were observed, histomorphometry measurements revealed that both bone resorption and bone formation parameters were increased in male Erk5 mice compared to wild type (WT) littermates. Osteopenia occurs where the rate of bone resorption exceeds that of bone formation, so we investigated the role of the osteoclast compartment. We found that treatment of RANKL-stimulated primary bone marrow-derived macrophage (BMDM) cultures with small molecule ERK5 pathway inhibitors increased osteoclast numbers. Furthermore, osteoclast numbers and expression of osteoclast marker genes were increased in parallel with reduced Erk5 expression in cultures generated from Erk5 mice compared to WT mice. Collectively, these results reveal a novel role for Erk5 during bone maturation and homeostasis in vivo.

摘要

细胞外信号调节激酶 5(ERK5)在发育和癌变过程中发挥作用。Nkx3.1 介导的 Cre 表达是一种用于遗传操作小鼠前列腺的有效策略。虽然在出生时大体上正常,但我们在 Nkx3.1:Cre;Erk5 (Erk5)小鼠中观察到了一个出乎意料的脊柱突出表型,大约在 6-8 周龄时出现。X 射线、组织学和微 CT(µCT)分析显示,100%的雄性和雌性 Erk5 小鼠的胸椎严重变形弯曲,伴有小梁骨体积的丧失。尽管观察到了性别特异性差异,但组织形态计量学测量显示,与野生型(WT)同窝仔相比,雄性 Erk5 小鼠的骨吸收和骨形成参数均增加。骨质疏松症是指骨吸收的速度超过骨形成的速度,因此我们研究了破骨细胞的作用。我们发现,用小分子 ERK5 通路抑制剂处理 RANKL 刺激的原代骨髓来源的巨噬细胞(BMDM)培养物会增加破骨细胞数量。此外,与 WT 小鼠相比,从 Erk5 小鼠生成的培养物中,破骨细胞数量和破骨细胞标记基因的表达增加,而 Erk5 表达降低。综上所述,这些结果揭示了 Erk5 在体内骨成熟和稳态中的新作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06fb/5643304/0aee397b48be/41598_2017_13346_Fig1_HTML.jpg

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