MicroRNA 3'-compensatory pairing occurs through two binding modes, with affinity shaped by nucleotide identity and position [1]
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https://www.ncbi.nlm.nih.gov/sra/SRP320549
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MicroRNAs (miRNAs), in association with Argonaute (AGO) proteins, direct repression by pairing to sites within mRNAs. Compared to pairing preferences of the miRNA seed region (nucleotides 2â8), preferences of the miRNA 3' region are poorly understood, due to the sparsity of measured affinities for the many pairing possibilities. We used RNA bind-n-seq with purified AGO2âmiRNA complexes to measure relative affinities of >1,000 3'-pairing architectures for each miRNA. In some cases, optimal 3' pairing increased affinity by >500-fold. Some miRNAs had two high-affinity 3'-pairing modesâone of which included additional nucleotides bridging seed and 3' pairing to enable high-affinity pairing to miRNA nucleotide 11. The affinity of binding and the position of optimal pairing both tracked with the occurrence of G or oligo(G/C) nucleotides within the miRNA. These and other results advance understanding of miRNA targeting, providing insight into how optimal 3' pairing is determined for each miRNA. Overall design: small RNA sequencing of AGO-RBNS binding reactions and input libraries. This study comprises 56 samples spanning three naturally occuring and four artificial miRNA sequences. The let-7a experiment was performed in replicate, using two different purifcations of both the AGOâmiRNA complex and the programmed library.
创建时间:
2022-04-04



