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永生化敏感元件及其结合因子介导猿猴病毒40大T抗原转化的永生化人成纤维细胞中I型胶原酶基因调控的年轻化。

Immortalization-susceptible elements and their binding factors mediate rejuvenation of regulation of the type I collagenase gene in simian virus 40 large T antigen-transformed immortal human fibroblasts.

作者信息

Imai S, Fujino T, Nishibayashi S, Manabe T, Takano T

机构信息

Department of Microbiology, Keio University School of Medicine, Tokyo, Japan.

出版信息

Mol Cell Biol. 1994 Nov;14(11):7182-94. doi: 10.1128/mcb.14.11.7182-7194.1994.

Abstract

Dramatic changes occur in expression of the type I collagenase gene during the process of immortalization in simian virus 40 large T antigen-transformed human fibroblasts (S. Imai and T. Takano, Biochem. Biophys. Res. Commun. 189:148-153, 1992). From transient transfection assays, it was determined that these changes involved the functions of two immortalization-susceptible cis-acting elements, ISE1 and ISE2, located in a 100-bp region about 1.7 kb upstream. The profiles of binding of an activator, Proserpine, to the enhancer ISE1 were similar in the extracts of young, senescent preimmortalized and immortalized cells. ISE2 contained both negative and positive regulatory elements located adjacent to each other. The positive regulatory element consisted of a tandem array of putative Ets family- and AP-1-binding sites. An activator, Pluto, interacted with this positive regulatory element and had an AP-1-related component as a complex. The binding activity of Pluto was predominantly detected only in the extract from senescent preimmortalized cells. In contrast, a repressor, Orpheus, which bound to the ATG-rich negative regulatory element of ISE2, was prominently detected in extracts from both young preimmortalized and immortalized cells and appeared to suppress transcription in an orientation-dependent manner. Thus, the interplay of Pluto and Orpheus was suggested to be crucial for regulation of the collagenase gene accompanying in vitro aging and immortalization. Proserpine seemed to interact with Pluto to mediate strong expression of the collagenase gene in cellular senescence. On the basis of these results, we propose a model for regulation of the collagenase gene during in vitro aging and immortalization.

摘要

在猿猴病毒40大T抗原转化的人成纤维细胞永生化过程中,I型胶原酶基因的表达发生了显著变化(S. 今井和T. 高野,《生物化学与生物物理研究通讯》189:148 - 153,1992)。通过瞬时转染试验确定,这些变化涉及位于上游约1.7 kb处100 bp区域内的两个对永生化敏感的顺式作用元件ISE1和ISE2的功能。激活剂普罗塞尔皮娜与增强子ISE1的结合模式在年轻、衰老前永生化和永生化细胞的提取物中相似。ISE2包含彼此相邻的负调控元件和正调控元件。正调控元件由一系列推定的Ets家族结合位点和AP - 1结合位点串联组成。激活剂冥王星与该正调控元件相互作用,并作为复合物含有一个与AP - 1相关的成分。冥王星的结合活性仅在衰老前永生化细胞的提取物中主要检测到。相反,一种阻遏物俄耳甫斯,它与ISE2富含ATG的负调控元件结合,在年轻前永生化细胞和永生化细胞的提取物中均显著检测到,并且似乎以方向依赖的方式抑制转录。因此,冥王星和俄耳甫斯之间的相互作用被认为对于伴随体外衰老和永生化的胶原酶基因调控至关重要。普罗塞尔皮娜似乎与冥王星相互作用,以介导胶原酶基因在细胞衰老中的强表达。基于这些结果,我们提出了一个体外衰老和永生化过程中胶原酶基因调控的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca87/359252/9ea51463c245/molcellb00011-0158-a.jpg

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