Department of Animal Molecular Biology, National Research Institute of Animal Production, Krakowska 1 Street, 32-083 Balice, Poland.
Department of Animal Reproduction, Anatomy and Genomics, University of Agriculture in Kraków, Mickiewicza 24/28, 30-059 Krakow, Poland.
Cells. 2022 Apr 8;11(8):1268. doi: 10.3390/cells11081268.
Matrix metalloproteinases (s) represent a family of enzymes capable of biocatalytically breaking down the structural and functional proteins responsible for extracellular matrix (ECM) integrity. This capability is widely used in physiological processes; however, imbalanced MMP activity can trigger the onset and progression of various pathological changes, including the neoplasmic transformation of different cell types. We sought to uncover molecular mechanisms underlying alterations in transcriptional profiles of genes coding for s, which were comprehensively identified in equine adult dermal tissue bioptates, sarcoid-derived explants, and ex vivo expanded adult cutaneous fibroblast cell (ACFC) lines subjected to inducible oncogenic transformation into sarcoid-like cells. The results strongly support the hypothesis that the transcriptional activity of genes correlates with molecular modifications arising in equine dermal cells during their conversion into sarcoid cells. The alterations in transcription signatures occurs in both sarcoid tissues and experimentally transformed equine ACFC lines expressing transgene, which were characterized by gene up- and down-regulation patterns.
基质金属蛋白酶(s)代表了一类能够生物催化分解负责细胞外基质(ECM)完整性的结构和功能蛋白的酶。这种能力在生理过程中被广泛应用;然而,MMP 活性的失衡会引发各种病理变化的发生和进展,包括不同细胞类型的肿瘤转化。我们试图揭示编码 s 的基因转录谱变化的分子机制,这些基因在马成年皮肤组织活检、结节衍生的外植体以及体外扩增的成纤维细胞(ACFC)系中被全面鉴定,这些细胞系被诱导发生肉瘤样细胞转化。研究结果强烈支持这样的假设,即基因的转录活性与马真皮细胞在转化为结节细胞过程中出现的分子修饰相关。转录特征的改变发生在结节组织和表达转基因的实验转化马 ACFC 系中,其特征是基因的上调和下调模式。