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Weak seed-pairing stability and high target-site abundance decrease the proficiency of lsy-6 and other microRNAs

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TLDR
In this article, the authors used the TargetScan tool for quantitatively predicting miRNA regulation (and siRNA off-targeting) to model differential miRNA proficiencies, thereby improving prediction performance.
Abstract
Most metazoan microRNAs (miRNAs) target many genes for repression, but the nematode lsy-6 miRNA is much less proficient. Here we show that the low proficiency of lsy-6 can be recapitulated in HeLa cells and that miR-23, a mammalian miRNA, also has low proficiency in these cells. Reporter results and array data indicate two properties of these miRNAs that impart low proficiency: their weak predicted seed-pairing stability (SPS) and their high target-site abundance (TA). These two properties also explain differential propensities of small interfering RNAs (siRNAs) to repress unintended targets. Using these insights, we expand the TargetScan tool for quantitatively predicting miRNA regulation (and siRNA off-targeting) to model differential miRNA (and siRNA) proficiencies, thereby improving prediction performance. We propose that siRNAs designed to have both weaker SPS and higher TA will have fewer off-targets without compromised on-target activity.

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Citations
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Journal ArticleDOI

miR-CLIP capture of a miRNA targetome uncovers a lincRNA H19-miR-106a interaction.

TL;DR: It is shown that miR-17-5p family members bind H19 in HeLa cells and myoblasts, suggesting that H19 acts as a 'sponge' for these miRNAs during myoblast differentiation.
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MiR-133a in Human Circulating Monocytes: A Potential Biomarker Associated with Postmenopausal Osteoporosis

TL;DR: The results suggest that miR-133a in circulating monocytes is a potential biomarker for postmenopausal osteoporosis.
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MicroRNA-339-5p Down-regulates Protein Expression of β-Site Amyloid Precursor Protein-Cleaving Enzyme 1 (BACE1) in Human Primary Brain Cultures and Is Reduced in Brain Tissue Specimens of Alzheimer Disease Subjects *

TL;DR: In this paper, the miR-339-5p target sites were predicted in the BACE1 3′-UTR by in silico analyses and co-transfection with a BACE 1 3′ -UTR reporter construct resulted in significant reduction in reporter expression.
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SNPs in microRNA target sites and their potential role in human disease.

TL;DR: How SNPs affect microRNA-binding sites in these regions, and how mRNA stability changes can lead to disease pathogenesis are examined.
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MicroRNA Profiling in Prostate Cancer - The Diagnostic Potential of Urinary miR-205 and miR-214

TL;DR: Investigation of potential miRNAs that can be used as biomarkers and/or therapeutic targets and can provide insight into the severity and ethnic biasness of PCa showed that miR-205 and mi-214 are downregulated in PCa and may serve as potential non-invasive molecular biomarker for PCa.
References
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Journal ArticleDOI

MicroRNAs: Genomics, Biogenesis, Mechanism, and Function

TL;DR: Although they escaped notice until relatively recently, miRNAs comprise one of the more abundant classes of gene regulatory molecules in multicellular organisms and likely influence the output of many protein-coding genes.
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Initial sequencing and analysis of the human genome.

Eric S. Lander, +248 more
- 15 Feb 2001 - 
TL;DR: The results of an international collaboration to produce and make freely available a draft sequence of the human genome are reported and an initial analysis is presented, describing some of the insights that can be gleaned from the sequence.
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MicroRNAs: Target Recognition and Regulatory Functions

TL;DR: The current understanding of miRNA target recognition in animals is outlined and the widespread impact of miRNAs on both the expression and evolution of protein-coding genes is discussed.
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Conserved seed pairing, often flanked by adenosines, indicates that thousands of human genes are microRNA targets

TL;DR: In a four-genome analysis of 3' UTRs, approximately 13,000 regulatory relationships were detected above the estimate of false-positive predictions, thereby implicating as miRNA targets more than 5300 human genes, which represented 30% of the gene set.
Journal ArticleDOI

The functions of animal microRNAs

TL;DR: Evidence is mounting that animal miRNAs are more numerous, and their regulatory impact more pervasive, than was previously suspected.
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