DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin structures embedded in long primary microRNA transcripts (pri-miRNAs) in eukaryotes. Although our knowledge of pri-miRNA processing has sig-nificantly advanced in recent years, the precise role of DGCR8 in this pathway remains unclear. In our present study, we dissect the domains in DGCR8 that contribute to the processing of pri-miRNAs and the subcellular localization of DGCR8. Drosha is stabilized through an interaction between its middle domain and the conserved C-terminal domain of DGCR8. Furthermore, DGCR8, but not Drosha, can directly and stably interact with pri-miRNAs, and the tandem dsRNA-binding domains (dsRBDs) in DGCR8 are responsi...
Canonical primary microRNA transcripts (pri-miRNAs) are characterized by a ∼30 bp hairpin flanked by...
SummaryCanonical primary microRNA transcripts (pri-miRNAs) are characterized by a ∼30 bp hairpin fla...
Canonical processing of miRNA begins in the nucleus with the Microprocessor complex, which is minima...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
SummaryThe Drosha-DGCR8 complex, also known as Microprocessor, is essential for microRNA (miRNA) mat...
SummaryThe Drosha-DGCR8 complex initiates microRNA maturation by precise cleavage of the stem loops ...
The Drosha-DGCR8 complex initiates microRNA maturation by precise cleavage of the stem loops that ar...
MicroRNA (miRNA) maturation is initiated by Microprocessor composed of RNase III DROSHA and its cofa...
The Drosha-DGCR8 complex initiates microRNA maturation by precise cleavage of the stem loops that ar...
Microprocessor, composed of DROSHA and its cofactor DGCR8, initiates microRNA (miRNA) biogenesis by ...
SummaryDuring miRNA biogenesis, the microprocessor complex (MC), which is composed minimally of Dros...
The Drosha-DGCR8 complex (Microprocessor) is required for microRNA (miRNA) biogenesis. DGCR8 recogni...
During miRNA biogenesis, the microprocessor complex (MC), which is composed minimally of Drosha, an ...
Canonical primary microRNA transcripts (pri-miRNAs) are characterized by a ∼30 bp hairpin flanked by...
SummaryCanonical primary microRNA transcripts (pri-miRNAs) are characterized by a ∼30 bp hairpin fla...
Canonical processing of miRNA begins in the nucleus with the Microprocessor complex, which is minima...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
DGCR8/Pasha is an essential cofactor for Drosha, a nuclear RNase III that cleaves the local hairpin ...
SummaryThe Drosha-DGCR8 complex, also known as Microprocessor, is essential for microRNA (miRNA) mat...
SummaryThe Drosha-DGCR8 complex initiates microRNA maturation by precise cleavage of the stem loops ...
The Drosha-DGCR8 complex initiates microRNA maturation by precise cleavage of the stem loops that ar...
MicroRNA (miRNA) maturation is initiated by Microprocessor composed of RNase III DROSHA and its cofa...
The Drosha-DGCR8 complex initiates microRNA maturation by precise cleavage of the stem loops that ar...
Microprocessor, composed of DROSHA and its cofactor DGCR8, initiates microRNA (miRNA) biogenesis by ...
SummaryDuring miRNA biogenesis, the microprocessor complex (MC), which is composed minimally of Dros...
The Drosha-DGCR8 complex (Microprocessor) is required for microRNA (miRNA) biogenesis. DGCR8 recogni...
During miRNA biogenesis, the microprocessor complex (MC), which is composed minimally of Drosha, an ...
Canonical primary microRNA transcripts (pri-miRNAs) are characterized by a ∼30 bp hairpin flanked by...
SummaryCanonical primary microRNA transcripts (pri-miRNAs) are characterized by a ∼30 bp hairpin fla...
Canonical processing of miRNA begins in the nucleus with the Microprocessor complex, which is minima...