Conservation and Targets of miR-71: A Systematic Review and Meta-Analysis

Author:

Naidoo Devin1ORCID,Brennan Ryan1,de Lencastre Alexandre2

Affiliation:

1. Frank H. Netter MD School of Medicine, Quinnipiac University, Hamden, CT 06518, USA

2. Department of Molecular and Cellular Biology, Quinnipiac University, Hamden, CT 06518, USA

Abstract

MicroRNAs (miRNAs) perform a pivotal role in the regulation of gene expression across the animal kingdom. As negative regulators of gene expression, miRNAs have been shown to function in the genetic pathways that control many biological processes and have been implicated in roles in human disease. First identified as an aging-associated gene in C. elegans, miR-71, a miRNA, has a demonstrated capability of regulating processes in numerous different invertebrates, including platyhelminths, mollusks, and insects. In these organisms, miR-71 has been shown to affect a diverse range of pathways, including aging, development, and immune response. However, the exact mechanisms by which miR-71 regulates these pathways are not completely understood. In this paper, we review the identified functions of miR-71 across multiple organisms, including identified gene targets, pathways, and the conditions which affect regulatory action. Additionally, the degree of conservation of miR-71 in the evaluated organisms and the conservation of their predicted binding sites in target 3′ UTRs was measured. These studies may provide an insight on the patterns, interactions, and conditions in which miR-71 is able to exert genotypic and phenotypic influence.

Publisher

MDPI AG

Subject

Genetics,Molecular Biology,Biochemistry

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