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巨核细胞增强因子的特性、分子克隆及表达

Characterization, molecular cloning and expression of megakaryocyte potentiating factor.

作者信息

Yamaguchi N, Yamamura Y, Konishi E, Ueda K, Kojima T, Hattori K, Oheda M, Imai N, Taniguchi Y, Tamura M, Ochi N

机构信息

Department of Cell Biology, Research Institute for Neurological Diseases and Geriatrics, Kyoto Prefectural University of Medicine, Japan.

出版信息

Stem Cells. 1996;14 Suppl 1:62-74. doi: 10.1002/stem.5530140708.

Abstract

We examined whether the conditioned media of 64 kinds of cell lines, which have been maintained by a protein-free culture system, could produce megakaryocyte potentiating (Meg-POT) activity. In these cell lines, HPC-Y5, established from human pancreatic cancer, was shown to have the highest level of activity. The megakaryocyte potentiating factor (MPF) was purified from its conditioned medium by a combination of ion-exchange chromatography, gel filtration and reversed-phase HPLC. The purified MPF showed Meg-POT activity almost equal to human (Hu) interleukin 6 (IL-6) in the presence of murine IL-3 in a colony-forming assay with mouse bone marrow cells. The molecular weight of MPF was estimated to be 33 kDa by SDS-PAGE. Glycopeptidase F digestion and amino sugar analysis of the factor demonstrated that MPF is a glycoprotein carrying at least one N-linked sugar chain. The N-terminal amino acid sequence of MPF was determined to be Leu-Ala-Gly-Glu-Thr-Gly-Gln-Glu-Ala-Ala-Pro-Leu-Asp-Gly-Val-Leu-Ala-Asn. The same or homologous amino acid sequence has not been found in known proteins, demonstrating that MPF may be a novel cytokine which has Meg-POT activity. Then, we isolated HuMPF cDNA from an HPC-Y5 cDNA library using polymerase chain reaction and plaque hybridization methods. The HuMPF cDNA encodes a polypeptide consisting of 622 amino acids, including a signal peptide of 33 amino acids, and with a deduced molecular weight of 68 kDa, although HPC-Y5 cells secrete a 33 kDa form of HuMPF. HuMPF cDNA does not show any significant homology with other known sequences. The cDNA was expressed in COS-7 and Chinese hamster ovary (CHO) cells, and Meg-POT activity was detected in their culture supernatant. The COS-7 cells secreted only a 33 kDa recombinant (r)HuMPF, however, an additional 30 kDa form was detected in the culture medium of CHO cells. The 33 kDa rHuMPF from CHO cells showed Meg-POT activity, but not the purified 30 kDa rHuMPF. The difference in structure and activity between the 33 and 30 kDa forms of HuMPF was ascribed to the existence in the 33 kDa form of the C-terminal 25 amino acid residues. The expression of MPF mRNA was examined by Northern blot analysis using labeled MPF cDNA as a probe. MPF mRNA was detected in HPC-Y5 cells, with an approximate molecular size of 2.4 kb. We also examined the expression of the MPF gene in various human tissues, and the 2.4 kb band was detected only in lung. Then, the immunohistocytochemical analysis and in situ hybridization revealed that MPF-producing cells were identified as lung macrophages. MPF may exhibit other biological activities such as regeneration of the lung tissues.

摘要

我们检测了采用无蛋白培养系统维持的64种细胞系的条件培养基是否能产生巨核细胞增强(Meg-POT)活性。在这些细胞系中,源自人胰腺癌的HPC-Y5显示出最高水平的活性。通过离子交换色谱、凝胶过滤和反相高效液相色谱相结合的方法,从其条件培养基中纯化出巨核细胞增强因子(MPF)。在小鼠骨髓细胞集落形成试验中,在存在小鼠白细胞介素3(IL-3)的情况下,纯化的MPF显示出与人类(Hu)白细胞介素6(IL-6)几乎相同的Meg-POT活性。通过十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS-PAGE)估计MPF的分子量为33 kDa。对该因子进行糖肽酶F消化和氨基糖分析表明,MPF是一种携带至少一条N-连接糖链的糖蛋白。确定MPF的N端氨基酸序列为Leu-Ala-Gly-Glu-Thr-Gly-Gln-Glu-Ala-Ala-Pro-Leu-Asp-Gly-Val-Leu-Ala-Asn。在已知蛋白质中未发现相同或同源的氨基酸序列,这表明MPF可能是一种具有Meg-POT活性的新型细胞因子。然后,我们使用聚合酶链反应和噬菌斑杂交方法从HPC-Y5 cDNA文库中分离出HuMPF cDNA。HuMPF cDNA编码一个由622个氨基酸组成的多肽,包括一个33个氨基酸的信号肽,推导分子量为68 kDa,尽管HPC-Y5细胞分泌的是33 kDa形式的HuMPF。HuMPF cDNA与其他已知序列没有任何显著同源性。该cDNA在COS-7细胞和中国仓鼠卵巢(CHO)细胞中表达,并在它们的培养上清液中检测到Meg-POT活性。然而,COS-7细胞仅分泌33 kDa的重组(r)HuMPF,而在CHO细胞的培养基中检测到另外一种30 kDa的形式。来自CHO细胞的33 kDa rHuMPF显示出Meg-POT活性,但纯化的30 kDa rHuMPF没有。HuMPF的33 kDa和30 kDa形式在结构和活性上的差异归因于33 kDa形式中存在C端的25个氨基酸残基。使用标记的MPF cDNA作为探针,通过Northern印迹分析检测MPF mRNA的表达。在HPC-Y5细胞中检测到MPF mRNA,其近似分子大小为2.4 kb。我们还检测了MPF基因在各种人体组织中的表达,仅在肺中检测到2.4 kb的条带。然后,免疫细胞化学分析和原位杂交显示,产生MPF的细胞被鉴定为肺巨噬细胞。MPF可能具有其他生物学活性,如肺组织的再生。

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