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早衰成纤维细胞中血小板衍生生长因子A链和c-fos基因表达的调节改变

Altered regulation of platelet-derived growth factor A-chain and c-fos gene expression in senescent progeria fibroblasts.

作者信息

Winkles J A, O'Connor M L, Friesel R

机构信息

Laboratory of Molecular Biology, Jerome H. Holland Laboratory for the Biomedical Sciences, American Red Cross, Rockville, Maryland 20855.

出版信息

J Cell Physiol. 1990 Aug;144(2):313-25. doi: 10.1002/jcp.1041440218.

Abstract

The study of human genetic disorders known as premature aging syndromes may provide insight into the mechanisms of cellular senescence. These diseases are clinically characterized by the premature onset and accelerated progression of numerous features normally associated with human aging. Previous studies have indicated that fibroblasts derived from premature aging syndrome patients have in vitro growth properties similar to senescent fibroblasts from normal individuals. As an initial approach to determine whether gene expression is altered in premature aging syndrome fibroblasts, RNA was prepared from various cell strains and used for gel blot hybridization experiments. Although normal fibroblasts only express platelet-derived growth factor (PDGF) A-chain mRNA for a brief period following mitogenic stimulation, one strain of Hutchinson-Gilford (progeria) syndrome fibroblasts, AG3513, constitutively expresses PDGF A-chain mRNA and PDGF-AA homodimers. The PDGF A-chain gene does not appear to be amplified or rearranged in these fibroblasts. AG3513 progeria fibroblasts have properties characteristic of senescent cells, including an altered morphology and a diminished mitogenic response to growth promoters. The diminished response of AG3513 progeria fibroblasts to PDGF stimulation was examined in some detail. Studies using 125I-PDGF-BB, which binds with high affinity to both A- and B-type PDGF receptors, indicate that normal and AG3513 progeria fibroblasts have a similar number of PDGF receptors. Although receptor autophosphorylation occurs normally in PDGF-stimulated AG3513 progeria fibroblasts, c-fos mRNA induction does not. The senescent phenotype of AG3513 fibroblasts is probably unrelated to their constitutive PDGF A-chain gene expression; further studies are necessary in order to directly address this issue. Also, additional analysis of this progeria fibroblast strain may provide information on the control of mitogen-inducible gene expression in normal cells.

摘要

对被称为早衰综合征的人类遗传疾病的研究,可能会为细胞衰老机制提供深入见解。这些疾病的临床特征是,许多通常与人类衰老相关的特征过早出现且进展加速。先前的研究表明,早衰综合征患者的成纤维细胞在体外具有与正常个体衰老成纤维细胞相似的生长特性。作为确定早衰综合征成纤维细胞中基因表达是否改变的初步方法,从各种细胞株中提取RNA,并用于凝胶印迹杂交实验。尽管正常成纤维细胞在有丝分裂原刺激后仅在短时间内表达血小板衍生生长因子(PDGF)A链mRNA,但一种哈钦森-吉尔福德(早衰症)综合征成纤维细胞株AG3513持续表达PDGF A链mRNA和PDGF-AA同二聚体。在这些成纤维细胞中,PDGF A链基因似乎未被扩增或重排。AG3513早衰症成纤维细胞具有衰老细胞的特征,包括形态改变和对生长促进剂的促有丝分裂反应减弱。对AG3513早衰症成纤维细胞对PDGF刺激反应减弱的情况进行了较为详细的研究。使用与A、B型PDGF受体均具有高亲和力的125I-PDGF-BB进行的研究表明,正常和AG3513早衰症成纤维细胞的PDGF受体数量相似。尽管在PDGF刺激的AG3513早衰症成纤维细胞中受体自磷酸化正常发生,但c-fos mRNA诱导却未发生。AG3513成纤维细胞的衰老表型可能与其持续的PDGF A链基因表达无关;为了直接解决这个问题,还需要进一步研究。此外,对这种早衰症成纤维细胞株的进一步分析,可能会提供有关正常细胞中有丝分裂原诱导基因表达调控的信息。

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