MicroRNA (miRNA)-mediated crosstalk between coding and non-coding RNAs of various types is known as the competing endogenous RNA (ceRNA) concept. Here, we propose that there is a specific variant of the ceRNA language that takes advantage of simple sequence repeat (SSR) wording. We applied bioinformatics tools to identify human transcripts that may be regarded as repeat-associated ceRNAs (raceRNAs). Multiple protein-coding transcripts, transcribed pseudogenes, long non-coding RNAs (lncRNAs) and circular RNAs (circRNAs) showing this potential were identified, and numerous miRNAs were predicted to bind to SSRs. We propose that simple repeats expanded in various hereditary neurological diseases may act as sponges for miRNAs containing compleme...
The past decade has witnessed exciting breakthroughs that have contributed to the richness and compl...
Small noncoding RNAs (snRNAs) were discovered more than two decades ago, yet it was not until relati...
The discovery of microRNAs (miRNAs) has fundamentally transformed our understanding of gene regulati...
Abstract Microsatellites, or simple tandem repeat sequences, occur naturally in the human genome and...
This paper connects Alu repeats, the most abundant repetitive elements in the human genome and micro...
The pathogenic agent responsible for the expanded repeat diseases, a group of neurodegenerative dise...
Neurodegenerative disorders and cancer are severe diseases threatening human health. The glaring dif...
This paper connects Alu repeats, the most abundant repetitive elements in the human genome and micro...
MicroRNAs (miRNAs) are a class of small noncoding RNAs that regulate gene expression by targeting mR...
Competing endogenous RNA, ceRNA, vie with messenger RNAs (mRNAs) for microRNAs (miRNAs) with shared ...
Posttranscriptional cross talk and communication between genes mediated by microRNA response element...
Simple sequence repeats (SSRs) are tandem repeat units of 1–6 bp that are identified in various comp...
Protein-coding genes account for only a small part of the human genome; in fact, the vast majority o...
Natural science is only just beginning to understand the complex processes surrounding transcription...
The expansion of tandem repeat sequences beyond a pathogenic threshold is responsible for a series o...
The past decade has witnessed exciting breakthroughs that have contributed to the richness and compl...
Small noncoding RNAs (snRNAs) were discovered more than two decades ago, yet it was not until relati...
The discovery of microRNAs (miRNAs) has fundamentally transformed our understanding of gene regulati...
Abstract Microsatellites, or simple tandem repeat sequences, occur naturally in the human genome and...
This paper connects Alu repeats, the most abundant repetitive elements in the human genome and micro...
The pathogenic agent responsible for the expanded repeat diseases, a group of neurodegenerative dise...
Neurodegenerative disorders and cancer are severe diseases threatening human health. The glaring dif...
This paper connects Alu repeats, the most abundant repetitive elements in the human genome and micro...
MicroRNAs (miRNAs) are a class of small noncoding RNAs that regulate gene expression by targeting mR...
Competing endogenous RNA, ceRNA, vie with messenger RNAs (mRNAs) for microRNAs (miRNAs) with shared ...
Posttranscriptional cross talk and communication between genes mediated by microRNA response element...
Simple sequence repeats (SSRs) are tandem repeat units of 1–6 bp that are identified in various comp...
Protein-coding genes account for only a small part of the human genome; in fact, the vast majority o...
Natural science is only just beginning to understand the complex processes surrounding transcription...
The expansion of tandem repeat sequences beyond a pathogenic threshold is responsible for a series o...
The past decade has witnessed exciting breakthroughs that have contributed to the richness and compl...
Small noncoding RNAs (snRNAs) were discovered more than two decades ago, yet it was not until relati...
The discovery of microRNAs (miRNAs) has fundamentally transformed our understanding of gene regulati...