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P细胞刺激因子:特性、对骨髓源性细胞多个谱系的作用及在肿瘤发生中的作用

P-cell stimulating factor: characterization, action on multiple lineages of bone-marrow-derived cells and role in oncogenesis.

作者信息

Schrader J W, Clark-Lewis I, Crapper R M, Wong G W

出版信息

Immunol Rev. 1983;76:79-104. doi: 10.1111/j.1600-065x.1983.tb01098.x.

Abstract

T-cell hybridomas have allowed us to define unequivocally a group of 3 distinct molecules, TCGF, T-cell GM-CSF, and PSF, as the products of the activated T-cell. It is becoming increasingly evident that these T-cell-derived molecules, together with a fourth, interferon-gamma, (Wong et al. 1982, 1983), affect a wide range of cell-types. The molecule which we have studied in greatest detail, PSF, probably effects every lineage of non-lymphoid bone-marrow-derived cells. We have evidence that PSF acts in vivo as an important mediator in a pleotropic defence and repair response to antigens that involves all the non-lymphoid elements of the blood. Finally, there is evidence that PSF-dependent cells can become immortal, and that activation and functional expression of the PSF gene can occur in such cells and result in autonomy and tumorigenesis. Clonal sources of T-cell lymphokines and clonal targets for lymphokine assays, formed the basis of recent progress in defining the number and nature of non-antigen-specific T cell products; cloning of the genes coding for these lymphokines should result in a similar impetus to the investigation of the physiology and possible therapeutic role of T-cell lymphokines, and lead to new insights into the control of gene expression and the role of these factors in oncogenesis.

摘要

T细胞杂交瘤使我们能够明确地定义一组由3种不同分子组成的物质,即TCGF、T细胞GM - CSF和PSF,它们是活化T细胞的产物。越来越明显的是,这些源自T细胞的分子,与第四种分子干扰素 - γ(Wong等人,1982年、1983年)一起,会影响多种细胞类型。我们研究得最为详细的分子PSF,可能对每一类非淋巴细胞性骨髓来源的细胞都有作用。我们有证据表明,PSF在体内作为一种重要的介质,参与了针对抗原的多效性防御和修复反应,该反应涉及血液中的所有非淋巴细胞成分。最后,有证据表明依赖PSF的细胞可以永生化,并且PSF基因在这些细胞中可以发生激活和功能表达,从而导致自主性和肿瘤发生。T细胞淋巴因子的克隆来源以及淋巴因子检测的克隆靶点,构成了近期在确定非抗原特异性T细胞产物的数量和性质方面取得进展的基础;对编码这些淋巴因子的基因进行克隆,应该会对T细胞淋巴因子的生理学和可能的治疗作用的研究产生类似的推动作用,并为基因表达的调控以及这些因子在肿瘤发生中的作用带来新的见解。

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