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蛋白聚糖巨噬细胞集落刺激因子的生物活性

Biologic activity of proteoglycan macrophage colony-stimulating factor.

作者信息

Suzu S, Kimura F, Ota J, Motoyoshi K, Itoh T, Mishima Y, Yamada M, Shimamura S

机构信息

Biochemical Research Laboratory, Morinaga Milk Industry Co. Ltd., Zama, Kanagawa, Japan.

出版信息

J Immunol. 1997 Aug 15;159(4):1860-7.

PMID:9257850
Abstract

We compared the biologic activities of 85-kDa macrophage-CSF (85-kDa M-CSF), which is fully active, and a proteoglycan M-CSF (PG-M-CSF). Both originate from the same precursor, but the latter retains the carboxyl-terminal portion, which must be proteolytically removed from the precursor to generate 85-kDa M-CSF and which is uniquely modified by a chondroitin sulfate glycosaminoglycan chain. PG-M-CSF supported the formation of murine macrophage colonies such as 85-kDa M-CSF. Furthermore, PG-M-CSF stimulated the proliferation of murine bone marrow macrophages, an M-CSF-dependent murine cell line, and an M-CSF-responsive human cell line established by transfer of the human M-CSF receptor gene. PG-M-CSF and 85-kDa M-CSF had equivalent specific biologic activities on a molar basis in all bioassays. The activity of PG-M-CSF was not affected by enzymatically removing the glycosaminoglycan chain when assayed by the formation of macrophage colonies and proliferation of the bone marrow macrophages. We analyzed the phosphorylation on tyrosine residue(s) of the M-CSF receptor in response to these M-CSFs that trigger mitogenic responses. PG-M-CSF rapidly (within 10 min) induced receptor phosphorylation in human cells with the same potency as 85-kDa M-CSF. These results indicate that PG-M-CSF is not a latent form or precursor of 85-kDa M-CSF but a fully biologically active cytokine.

摘要

我们比较了具有完全活性的85kDa巨噬细胞集落刺激因子(85kDa M-CSF)和蛋白聚糖M-CSF(PG-M-CSF)的生物学活性。两者都来源于同一前体,但后者保留了羧基末端部分,该部分必须从前体中通过蛋白水解去除才能产生85kDa M-CSF,并且其独特地被硫酸软骨素糖胺聚糖链修饰。PG-M-CSF支持形成如85kDa M-CSF那样的小鼠巨噬细胞集落。此外,PG-M-CSF刺激小鼠骨髓巨噬细胞、一种M-CSF依赖的小鼠细胞系以及通过转染人M-CSF受体基因建立的M-CSF反应性人细胞系的增殖。在所有生物测定中,PG-M-CSF和85kDa M-CSF在摩尔基础上具有同等的比生物学活性。当通过巨噬细胞集落形成和骨髓巨噬细胞增殖进行测定时,PG-M-CSF的活性不受酶促去除糖胺聚糖链的影响。我们分析了响应这些引发有丝分裂反应的M-CSF时M-CSF受体酪氨酸残基的磷酸化情况。PG-M-CSF在人细胞中能迅速(在10分钟内)诱导受体磷酸化,其效力与85kDa M-CSF相同。这些结果表明,PG-M-CSF不是85kDa M-CSF的潜伏形式或前体,而是一种具有完全生物学活性的细胞因子。

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