Centre of Systems Biology, Biomedical Research Foundation of the Academy of Athens, 11527 Athens, Greece.
Laboratory of Biology, University of Athens School of Medicine, 11527 Athens, Greece.
Int J Mol Sci. 2023 Jun 11;24(12):10004. doi: 10.3390/ijms241210004.
The collagen family contains 28 proteins, predominantly expressed in the extracellular matrix (ECM) and characterized by a triple-helix structure. Collagens undergo several maturation steps, including post-translational modifications (PTMs) and cross-linking. These proteins are associated with multiple diseases, the most pronounced of which are fibrosis and bone diseases. This review focuses on the most abundant ECM protein highly implicated in disease, type I collagen (collagen I), in particular on its predominant chain collagen type I alpha 1 (COLα1 (I)). An overview of the regulators of COLα1 (I) and COLα1 (I) interactors is presented. Manuscripts were retrieved searching PubMed, using specific keywords related to COLα1 (I). regulators at the epigenetic, transcriptional, post-transcriptional and post-translational levels include DNA Methyl Transferases (DNMTs), Tumour Growth Factor β (TGFβ), Terminal Nucleotidyltransferase 5A (TENT5A) and Bone Morphogenic Protein 1 (BMP1), respectively. COLα1 (I) interacts with a variety of cell receptors including integrinβ, Endo180 and Discoidin Domain Receptors (DDRs). Collectively, even though multiple factors have been identified in association to COLα1 (I) function, the implicated pathways frequently remain unclear, underscoring the need for a more spherical analysis considering all molecular levels simultaneously.
胶原家族包含 28 种蛋白质,主要表达于细胞外基质(ECM),其特征为三螺旋结构。胶原经历多种成熟步骤,包括翻译后修饰(PTMs)和交联。这些蛋白与多种疾病相关,其中最明显的是纤维化和骨疾病。本综述聚焦于在疾病中高度涉及的最丰富的 ECM 蛋白,即 I 型胶原(胶原 I),特别是其主要链 I 型胶原α1(COLα1(I))。本文概述了 COLα1(I)及其相互作用蛋白的调控因子。通过使用与 COLα1(I)相关的特定关键字在 PubMed 上检索文献。COLα1(I)在表观遗传、转录、转录后和翻译后水平的调控因子分别为 DNA 甲基转移酶(DNMTs)、肿瘤生长因子β(TGFβ)、末端核苷酸转移酶 5A(TENT5A)和骨形态发生蛋白 1(BMP1)。COLα1(I)与多种细胞受体相互作用,包括整合素β、Endo180 和盘状结构域受体(DDRs)。尽管已经确定了与 COLα1(I)功能相关的多种因素,但涉及的途径常常仍不清楚,这突显了需要同时考虑所有分子水平进行更全面的分析。