SummaryThe Drosha-DGCR8 complex, also known as Microprocessor, is essential for microRNA (miRNA) maturation. Drosha functions as the catalytic subunit, while DGCR8 (also known as Pasha) recognizes the RNA substrate. Although the action mechanism of this complex has been intensively studied, it remains unclear how Drosha and DGCR8 are regulated and if these proteins have any additional role(s) apart from miRNA processing. Here, we report that Drosha and DGCR8 regulate each other posttranscriptionally. The Drosha-DGCR8 complex cleaves the hairpin structures embedded in the DGCR8 mRNA and thereby destabilizes the mRNA. We further find that DGCR8 stabilizes the Drosha protein via protein-protein interaction. This crossregulation between Drosha ...
Mature microRNAs (miRNAs) are generated via a two-step processing pathway to yield approximately 22-...
To date microRNA precursors have been described as long capped and polyadenilated transcripts, mostl...
The cellular abundance of mature microRNAs (miRNAs) is dictated by the efficiency of nuclear process...
SummaryThe Drosha-DGCR8 complex, also known as Microprocessor, is essential for microRNA (miRNA) mat...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
The microprocessor is a complex comprising the RNase III enzyme Drosha and the double-stranded RNA-b...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
The Drosha-DGCR8 complex (Microprocessor) is required for microRNA (miRNA) biogenesis. DGCR8 recogni...
SummaryDuring miRNA biogenesis, the microprocessor complex (MC), which is composed minimally of Dros...
MicroRNA (miRNA) maturation is initiated by Microprocessor composed of RNase III DROSHA and its cofa...
During miRNA biogenesis, the microprocessor complex (MC), which is composed minimally of Drosha, an ...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
To date microRNA precursors have been described as long capped and polyadenilated transcripts, mostl...
The Microprocessor, containing the RNA binding protein Dgcr8 and RNase III enzyme Drosha, is respons...
The Microprocessor, containing the RNA binding protein Dgcr8 and RNase III enzyme Drosha, is respons...
Mature microRNAs (miRNAs) are generated via a two-step processing pathway to yield approximately 22-...
To date microRNA precursors have been described as long capped and polyadenilated transcripts, mostl...
The cellular abundance of mature microRNAs (miRNAs) is dictated by the efficiency of nuclear process...
SummaryThe Drosha-DGCR8 complex, also known as Microprocessor, is essential for microRNA (miRNA) mat...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
The microprocessor is a complex comprising the RNase III enzyme Drosha and the double-stranded RNA-b...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
The Drosha-DGCR8 complex (Microprocessor) is required for microRNA (miRNA) biogenesis. DGCR8 recogni...
SummaryDuring miRNA biogenesis, the microprocessor complex (MC), which is composed minimally of Dros...
MicroRNA (miRNA) maturation is initiated by Microprocessor composed of RNase III DROSHA and its cofa...
During miRNA biogenesis, the microprocessor complex (MC), which is composed minimally of Drosha, an ...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
To date microRNA precursors have been described as long capped and polyadenilated transcripts, mostl...
The Microprocessor, containing the RNA binding protein Dgcr8 and RNase III enzyme Drosha, is respons...
The Microprocessor, containing the RNA binding protein Dgcr8 and RNase III enzyme Drosha, is respons...
Mature microRNAs (miRNAs) are generated via a two-step processing pathway to yield approximately 22-...
To date microRNA precursors have been described as long capped and polyadenilated transcripts, mostl...
The cellular abundance of mature microRNAs (miRNAs) is dictated by the efficiency of nuclear process...