Phosphate and R2D2 restrict the substrate specificity of Dicer-2, an ATP-driven ribonuclease.
نویسندگان
چکیده
Drosophila Dicer-2 generates small interfering RNAs (siRNAs) from long double-stranded RNA (dsRNA), whereas Dicer-1 produces microRNAs (miRNAs) from pre-miRNA. What makes the two Dicers specific for their biological substrates? We find that purified Dicer-2 can efficiently cleave pre-miRNA, but that inorganic phosphate and the Dicer-2 partner protein R2D2 inhibit pre-miRNA cleavage. Dicer-2 contains C-terminal RNase III domains that mediate RNA cleavage and an N-terminal helicase motif, whose function is unclear. We show that Dicer-2 is a dsRNA-stimulated ATPase that hydrolyzes ATP to ADP; ATP hydrolysis is required for Dicer-2 to process long dsRNA, but not pre-miRNA. Wild-type Dicer-2, but not a mutant defective in ATP hydrolysis, can generate siRNAs faster than it can dissociate from a long dsRNA substrate. We propose that the Dicer-2 helicase domain uses ATP to generate many siRNAs from a single molecule of dsRNA before dissociating from its substrate.
منابع مشابه
Inorganic phosphate blocks binding of pre-miRNA to Dicer-2 via its PAZ domain.
In Drosophila, Dicer-1 produces microRNAs (miRNAs) from pre-miRNAs, whereas Dicer-2 generates small interfering RNAs from long double-stranded RNA (dsRNA), a process that requires ATP hydrolysis. We previously showed that inorganic phosphate inhibits Dicer-2 cleavage of pre-miRNAs, but not long dsRNAs. Here, we report that phosphate-dependent substrate discrimination by Dicer-2 reflects dsRNA s...
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متن کاملInorganic phosphate blocks binding of pre-miRNA to Dicer-2 via its PAZ domains
I would ask you to especially focus your efforts on the following points: -> discuss and clarify the technical concerns raised by ref #1 -> elaborate the discussion of how phosphate binds Dicer-2, how protein co-factors may affect the outcome of this binding, and how the presence of phosphate could alter RNA binding through the dsRBDs (as pointed out by refs 1 and 2) -> elaborate the discussion...
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ورودعنوان ژورنال:
- Molecular cell
دوره 42 2 شماره
صفحات -
تاریخ انتشار 2011