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Insulin-like growth factor 2 messenger RNA (IGF2 mRNA) (IGF2 mRNA)

Target
IGF2 mRNA
Molecular classification
Messenger RNA [2, 12], Nucleic acid [6, 8]
01

Overview

Insulin-like growth factor 2 (IGF2) mRNA is the messenger RNA transcript that serves as the template for the synthesis of the IGF2 protein, a potent mitogen and key regulator of fetal growth and development [2, 14]. While its expression is tightly controlled by genomic imprinting in normal adult tissues, dysregulation—most notably the loss of imprinting—leads to the pathological overexpression of IGF2 mRNA in a wide range of human malignancies, including hepatocellular, colorectal, and pancreatic cancers [3, 6, 21]. This overexpression drives autocrine and paracrine signaling pathways that promote tumor cell proliferation, survival, and resistance to therapy [1, 19]. Consequently, IGF2 mRNA has emerged as a significant therapeutic target for RNA-centered modalities such as antisense oligonucleotides (ASOs) and small interfering RNAs (siRNAs), which aim to silence the gene before protein production occurs [6, 8, 17]. This strategy is particularly valuable for avoiding the cross-reactivity and metabolic toxicities often associated with targeting the IGF2 protein or the IGF1 receptor, which share high structural homology with the insulin receptor [6, 14]. Additionally, recent research has identified a role for IGF2 mRNA in the spinal cord during the development of neuropathic pain, suggesting broader therapeutic applications for its targeted inhibition [9, 18]. The stability and translation of IGF2 mRNA are further regulated by a family of RNA-binding proteins known as IGF2BPs, which are themselves emerging as critical oncogenic factors and therapeutic targets [1, 12, 23]. Therapeutic development focusing on IGF2 mRNA must address challenges such as efficient delivery to target tissues and the potential for off-target effects on normal growth and metabolic processes [9, 12].

Other names
IGF-II mRNA [11]Somatomedin-A mRNA [11]INSIGF mRNA [11]
02

Mechanism of action

Antisense inhibition or RNA interference (RNAi) leading to targeted degradation of the mRNA transcript or repression of translation, thereby reducing the production of the IGF2 protein [6, 8, 14, 17].

03

Biological functions

Protein synthesis template [2]Cell proliferation [3, 14]Cell growth regulation [2, 14]Fetal development [2, 14]Metabolic regulation [2, 12]
04

Disease associations

Cancer (including hepatocellular, colorectal, ovarian, and pancreatic cancers) [1, 3, 4, 6, 21]Neuropathic pain [9, 17, 18]Beckwith-Wiedemann syndrome [2]Silver-Russell syndrome [2]
05

Safety considerations

Off-target effects of RNA-based therapies [9]Potential for systemic growth disturbances [12]Metabolic side effects due to insulin-like activity [2, 12]Therapeutic delivery challenges [9]
06

Interacting drugs

Experimental antisense oligonucleotides [6, 14]

2 more in the full profile.

07

Biomarkers

IGF2 mRNA expression levels [4, 21]Loss of imprinting (LOI) at the IGF2/H19 locus [6]DNA methylation status of the IGF2 promoter [6]

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