Translation can be stopped by various mechanisms of mRNA decay. Sort the appropriate items to their respective bins. initiated by deadenylases that shorten the poly-A tail degrades most eukaryotic mRNAs eliminates mRNAs with premature stop codons Deadenylation-dependent yields mRNAs that can be cleaved internally by endoribonucleases begins at the 5' cap rather than the 3' poly-A tail Deadenylation-independent yields mRNA with short poly-A tail that can be destroyed by exosome complex Both deadenylation-dependent and deadenylation-independent Reset yields mRNA that can be destroyed by decapping enzymes and XRN1 Neither deadenylation- dependent nor deadenylation- independent Help

Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
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Translation can be stopped by various mechanisms of mRNA decay.
Sort the appropriate items to their respective bins.
initiated by deadenylases that shorten
the poly-A tail
degrades most eukaryotic mRNAs
eliminates mRNAs with premature
stop codons
Deadenylation-dependent
yields mRNAs that can be cleaved
internally by endoribonucleases
begins at the 5' cap rather than the 3'
poly-A tail
Deadenylation-independent
yields mRNA with short poly-A tail that
can be destroyed by exosome
complex
Both deadenylation- dependent
and deadenylation-independent
Reset Help
yields mRNA that can be destroyed by
decapping enzymes and XRN1
Neither deadenylation-
dependent nor deadenylation-
independent
Transcribed Image Text:Translation can be stopped by various mechanisms of mRNA decay. Sort the appropriate items to their respective bins. initiated by deadenylases that shorten the poly-A tail degrades most eukaryotic mRNAs eliminates mRNAs with premature stop codons Deadenylation-dependent yields mRNAs that can be cleaved internally by endoribonucleases begins at the 5' cap rather than the 3' poly-A tail Deadenylation-independent yields mRNA with short poly-A tail that can be destroyed by exosome complex Both deadenylation- dependent and deadenylation-independent Reset Help yields mRNA that can be destroyed by decapping enzymes and XRN1 Neither deadenylation- dependent nor deadenylation- independent
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