Sbarro Institute for Cancer Research and Molecular Medicine, Temple University, Philadelphia, PA 19122, USA.
ISOPROG-Somatolink EPFP Network, Functional Research Unit, Philadelphia, PA 19104, USA and 93100 Caltanissetta, Italy.
Biomolecules. 2020 Nov 30;10(12):1617. doi: 10.3390/biom10121617.
Insulin receptor (IR) and IR-related signaling defects have been shown to trigger insulin-resistance in insulin-dependent cells and ultimately to give rise to type 2 diabetes in mammalian organisms. IR expression is ubiquitous in mammalian tissues, and its over-expression is also a common finding in cancerous cells. This latter finding has been shown to associate with both a relative and absolute increase in IR isoform-A (IR-A) expression, missing 12 aa in its EC subunit corresponding to exon 11. Since IR-A is a high-affinity transducer of Insulin-like Growth Factor-II (IGF-II) signals, a growth factor is often secreted by cancer cells; such event offers a direct molecular link between IR-A/IR-B increased ratio in insulin resistance states (obesity and type 2 diabetes) and the malignant advantage provided by IGF-II to solid tumors. Nonetheless, recent findings on the biological role of isoforms for cellular signaling components suggest that the preferential expression of IR isoform-A may be part of a wider contextual isoform-expression switch in downstream regulatory factors, potentially enhancing IR-dependent oncogenic effects. The present review focuses on the role of isoform- and paralog-dependent variability in the IR and downstream cellular components playing a potential role in the modulation of the IR-A signaling related to the changes induced by insulin-resistance-linked conditions as well as to their relationship with the benign versus malignant transition in underlying solid tumors.
胰岛素受体 (IR) 和与 IR 相关的信号缺陷已被证明会触发胰岛素依赖性细胞中的胰岛素抵抗,并最终导致哺乳动物机体中的 2 型糖尿病。IR 在哺乳动物组织中普遍表达,其过度表达也是癌细胞中的常见发现。这一发现与 IR 同工型-A (IR-A) 的相对和绝对表达增加有关,其 EC 亚基缺失 12 个氨基酸,对应于外显子 11。由于 IR-A 是胰岛素样生长因子-II (IGF-II) 信号的高亲和力转导器,生长因子通常由癌细胞分泌;这种事件为胰岛素抵抗状态(肥胖和 2 型糖尿病)中 IR-A/IR-B 比值增加与 IGF-II 为实体瘤提供的恶性优势之间提供了直接的分子联系。尽管如此,最近关于细胞信号成分同工型的生物学作用的发现表明,IR 同工型-A 的优先表达可能是下游调节因子中更广泛的上下文同工型表达转换的一部分,可能增强了与胰岛素抵抗相关条件诱导的变化相关的 IR 依赖性致癌作用。本综述重点介绍了 IR 和下游细胞成分中同工型和同源基因依赖性变异性的作用,这些变异性可能在调节与胰岛素抵抗相关条件诱导的 IR-A 信号以及与潜在实体肿瘤中的良性与恶性转化的关系方面发挥作用。