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巨噬细胞缺陷的骨石化(op/op)小鼠中集落刺激因子1完全缺失。

Total absence of colony-stimulating factor 1 in the macrophage-deficient osteopetrotic (op/op) mouse.

作者信息

Wiktor-Jedrzejczak W, Bartocci A, Ferrante A W, Ahmed-Ansari A, Sell K W, Pollard J W, Stanley E R

机构信息

Department of Pathology, Emory University School of Medicine, Atlanta, GA 30322.

出版信息

Proc Natl Acad Sci U S A. 1990 Jun;87(12):4828-32. doi: 10.1073/pnas.87.12.4828.

DOI:10.1073/pnas.87.12.4828
PMID:2191302
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC54211/
Abstract

Osteopetrotic (op/op) mutant mice suffer from congenital osteopetrosis due to a severe deficiency of osteoclasts. Furthermore, the total number of mononuclear phagocytes is extremely low in affected mice. Serum, 11 tissues, and different cell and organ conditioned media from op/op mice were shown to be devoid of biologically active colony-stimulating factor 1 (CSF-1), whereas all of these preparations from littermate control +/+ and +/op mice contained the growth factor. The deficiency was specific for CSF-1 in that serum or conditioned media from op/op mice possessed elevated levels of at least three other macrophage growth factors. Partial correction of the op/op defect was observed following intraperitoneal implantation of diffusion chambers containing L929 cells, which in culture produce CSF-1 as their sole macrophage growth factor. No rearrangement of the CSF-1 gene in op/op mice was detected by Southern analysis. However, in contrast to control lung fibroblasts, which contained 4.6- and 2.3-kilobase CSF-1 mRNAs, only the 4.6-kilobase species was detected in op/op cells. An alteration in the CSF-1 gene is strongly implicated as the primary defect in op/op mice because they do not contain detectable CSF-1, their defect is correctable by administration of CSF-1, the op locus and the CSF-1 gene map within the same region of mouse chromosome 3, their CSF-1 mRNA biosynthesis is altered, and the op/op phenotype is consistent with the phenotype expected in a CSF-1 deficient mouse.

摘要

骨石化(op/op)突变小鼠由于破骨细胞严重缺乏而患有先天性骨石化。此外,受影响小鼠的单核吞噬细胞总数极低。已证明来自op/op小鼠的血清、11种组织以及不同细胞和器官条件培养基中均缺乏生物活性集落刺激因子1(CSF-1),而来自同窝对照+/+和+/op小鼠的所有这些制剂都含有这种生长因子。这种缺陷对CSF-1具有特异性,因为来自op/op小鼠的血清或条件培养基中至少有其他三种巨噬细胞生长因子的水平升高。在腹腔内植入含有L929细胞的扩散室后,观察到op/op缺陷得到部分纠正,L929细胞在培养中产生CSF-1作为其唯一的巨噬细胞生长因子。通过Southern分析未检测到op/op小鼠中CSF-1基因的重排。然而,与含有4.6和2.3千碱基CSF-1 mRNA的对照肺成纤维细胞相比,在op/op细胞中仅检测到4.6千碱基的种类。强烈怀疑CSF-1基因的改变是op/op小鼠的主要缺陷,因为它们不含可检测到的CSF-1,它们的缺陷可通过给予CSF-1来纠正,op位点和CSF-1基因位于小鼠染色体3的同一区域内,它们的CSF-1 mRNA生物合成发生改变,并且op/op表型与CSF-1缺陷小鼠预期的表型一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1653/54211/c773ddc80f71/pnas01037-0428-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1653/54211/c773ddc80f71/pnas01037-0428-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1653/54211/c773ddc80f71/pnas01037-0428-a.jpg

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