Nandi Sayan, Akhter Mohammed P, Seifert Mark F, Dai Xu-Ming, Stanley E Richard
Department of Developmental and Molecular Biology, Albert Einstein College of Medicine, 1300 Morris Park Ave, Bronx, NY 10461, USA.
Blood. 2006 Jan 15;107(2):786-95. doi: 10.1182/blood-2005-05-1822. Epub 2005 Oct 6.
The primary macrophage growth factor, colony-stimulating factor-1 (CSF-1), is homodimeric and exists in 3 biologically active isoforms: a membrane-spanning, cell-surface glycoprotein (csCSF-1) and secreted glycoprotein (sgCSF-1) and proteoglycan (spCSF-1) isoforms. To investigate the in vivo role of the chondroitin sulfate glycosaminoglycan (GAG) chain of spCSF-1, we created mice that exclusively express, in a normal tissue-specific and developmental manner, either the secreted precursor of spCSF-1 or the corresponding precursor in which the GAG addition site was mutated. The reproductive, hematopoietic tooth eruption and tissue macrophage defects of CSF-1-deficient, osteopetrotic Csf1(op)/Csf1(op) mice were corrected by transgenic expression of the precursors of either sgCSF-1 or spCSF-1. Furthermore, in contrast to the transgene encoding csCSF-1, both failed to completely correct growth retardation, suggesting a role for csCSF-1 in the regulation of body weight. However, spCSF-1, in contrast to sgCSF-1, completely resolved the osteopetrotic phenotype. Furthermore, in transgenic lines expressing different concentrations of sgCSF-1 or spCSF-1, spCSF-1 more efficiently corrected Csf1(op)/Csf1(op) defects of tooth eruption, eyelid opening, macrophage morphology, and B-cell deficiency than sgCSF-1. These results indicate an important role of the CSF-1 chondroitin sulfate proteoglycan in in vivo signaling by secreted CSF-1.
主要的巨噬细胞生长因子,即集落刺激因子-1(CSF-1),是同二聚体,以3种生物活性异构体形式存在:一种跨膜细胞表面糖蛋白(csCSF-1)、分泌型糖蛋白(sgCSF-1)和蛋白聚糖(spCSF-1)异构体。为了研究spCSF-1的硫酸软骨素糖胺聚糖(GAG)链在体内的作用,我们构建了小鼠模型,使其以正常的组织特异性和发育方式特异性表达spCSF-1的分泌前体或GAG添加位点发生突变的相应前体。CSF-1缺陷型骨石化Csf1(op)/Csf1(op)小鼠的生殖、造血、牙齿萌出及组织巨噬细胞缺陷,通过sgCSF-1或spCSF-1前体的转基因表达得到了纠正。此外,与编码csCSF-1的转基因不同,这两种转基因均未能完全纠正生长迟缓,提示csCSF-1在体重调节中起作用。然而,与sgCSF-1相比,spCSF-1完全消除了骨石化表型。此外,在表达不同浓度sgCSF-1或spCSF-1的转基因品系中,spCSF-1比sgCSF-1更有效地纠正了Csf1(op)/Csf1(op)小鼠在牙齿萌出、睁眼、巨噬细胞形态和B细胞缺陷方面的问题。这些结果表明,CSF-1硫酸软骨素蛋白聚糖在分泌型CSF-1的体内信号传导中起重要作用。