Department of Pathology, School of Medicine, Boston University Medical Campus, Boston, MA, USA.
Department of Biochemistry and Center for Biomedical Mass Spectrometry, School of Medicine, Boston University Medical Campus, Boston, MA, USA.
J Mol Cell Biol. 2018 Jun 1;10(3):195-204. doi: 10.1093/jmcb/mjy002.
Intrinsically disordered proteins (IDPs)/intrinsically unstructured proteins are characterized by the lack of fixed or stable tertiary structure, and are increasingly recognized as an important class of proteins with major roles in signal transduction and transcriptional regulation. In this study, we report the identification and functional characterization of a previously uncharacterized protein (UPF0258/KIAA1024), major intrinsically disordered Notch2-associated receptor 1 (MINAR1). While MINAR1 carries a single transmembrane domain and a short cytoplasmic domain, it has a large extracellular domain that shares no similarity with known protein sequences. Uncharacteristically, MINAR1 is a highly IDP with nearly 70% of its amino acids sequences unstructured. We demonstrate that MINAR1 physically interacts with Notch2 and its binding to Notch2 increases its stability and function. MINAR1 is widely expressed in various tissues including the epithelial cells of the breast and endothelial cells of blood vessels. MINAR1 plays a negative role in angiogenesis as it inhibits angiogenesis in cell culture and in mouse matrigel plug and zebrafish angiogenesis models. Furthermore, while MINAR1 is highly expressed in the normal human breast, its expression is significantly downregulated in advanced human breast cancer and its re-expression in breast cancer cells inhibited tumor growth. Our study demonstrates that MINAR1 is an IDP that negatively regulates angiogenesis and growth of breast cancer cells.
无定形蛋白质(IDP)/无规卷曲蛋白质的特点是缺乏固定或稳定的三级结构,并且越来越被认为是一类在信号转导和转录调控中起重要作用的重要蛋白质。在这项研究中,我们报告了一个以前未被描述的蛋白质(UPF0258/KIAA1024),即主要无定形 Notch2 相关受体 1(MINAR1)的鉴定和功能特征。虽然 MINAR1 带有一个单一的跨膜域和一个短的细胞质域,但它有一个大的细胞外域,与已知的蛋白质序列没有相似性。不寻常的是,MINAR1 是一种高度无规卷曲蛋白质,近 70%的氨基酸序列没有结构。我们证明 MINAR1 与 Notch2 物理相互作用,其与 Notch2 的结合增加了其稳定性和功能。MINAR1 在各种组织中广泛表达,包括乳腺的上皮细胞和血管的内皮细胞。MINAR1 在血管生成中起负调控作用,因为它抑制细胞培养中的血管生成以及在小鼠基质胶塞和斑马鱼血管生成模型中的血管生成。此外,虽然 MINAR1 在正常的人类乳腺中高度表达,但在晚期人类乳腺癌中其表达显著下调,并且在乳腺癌细胞中的重新表达抑制了肿瘤生长。我们的研究表明,MINAR1 是一种负调控血管生成和乳腺癌细胞生长的 IDP。