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Published on: December 13, 2014
Characterization of SERCA2b Ca2+-Mg2+ ATPase mRNA decay by nuclear proteins
Tao Chen1, Paromita Ghosh, Christine M Misquitta
1Department of Medicine, HSC 4N41, McMaster University, 1200 Main Street West, Hamilton, Ontario, Canada L8N 3Z5.
Abstract:
Gene expression is controlled at several levels including mRNA decay. Sarco/endoplasmic reticulum Ca2+-Mg2+-ATPase isoform 2b (SERCA2b) is central to Ca2+ signalling and homeostasis in several tissues. SERCA2b mRNA decay involves interactions between cis-acting elements in its 3'-region and trans-acting nuclear protein factors. In the presence of the protein factors, the synthetic capped and polyadenylated RNA fragment 2b1 (3444-3753) decays faster than other SERCA2b 3'-region fragments. Here we determined the minimum cis-acting destabilizing element in the decay and its interactions with the nuclear protein factors. The in vitro decay required ATP hydrolysis and Mg2+ but not Ca2+. The decay was directional from 3' to 5', and involved a novel 35b GC rich domain designated 2b1-4 corresponding to 3521-3555. The decay of 2b1 RNA was decreased by (a) competition with 2b1-4, (b) mutation of 2b1 to delete 2b1-4, and (c) depleting the extracts of destabilizing trans-acting factors using immobilized 2b1-4. To determine the minimal destabilizing elements 2b1-4 was divided into 7b domains A-E. Deleting AB, BC, CD or DE inactivated the destabilizing cis-acting element but deleting A, B, C, D or E had no effect. In electrophoresis mobility shift assays the nuclear protein extracts retarded the mobility of labeled uncapped 2b1 RNA without a poly A+ tail. A positive co-operativity in the interactions was shown in protein concentration dependence of the shift and in the competition of 2b1-4 in inhibiting the mobility of 2b1 RNA. Based on further experiments, the domain CDE (3535-3555) was sufficient to compete with 2b1 RNA for the protein binding. Consistent with this competition, excess CDE RNA retarded the in vitro decay of 2b1 RNA. Thus the RNA decay required ATP hydrolysis and Mg2+ but not Ca2+, the minimum binding domain was in the sequence 3535-3555, and the decay may involve a multimeric protein complex.
Insights
This study identifies a specific RNA sequence (3535-3555) that destabilizes Sarco/endoplasmic reticulum Ca2+-Mg2+-ATPase isoform 2b (SERCA2b) mRNA. This decay process requires ATP and magnesium, involving protein interactions with the identified RNA domain.
Area of Science:
- Molecular Biology
- Gene Regulation
- Biochemistry
Background:
- Gene expression regulation is crucial for cellular function.
- mRNA decay is a key regulatory mechanism.
- Sarco/endoplasmic reticulum Ca2+-Mg2+-ATPase isoform 2b (SERCA2b) plays a vital role in calcium homeostasis.
Purpose of the Study:
- To identify the minimal cis-acting element responsible for SERCA2b mRNA decay.
- To investigate the interaction between this element and nuclear protein factors.
- To elucidate the biochemical requirements for SERCA2b mRNA decay.
Main Methods:
- In vitro decay assays using synthetic RNA fragments.
- Electrophoresis mobility shift assays (EMSA) to study protein-RNA interactions.
- RNA competition assays and site-directed mutagenesis to map functional domains.
Main Results:
- A novel 35-nucleotide GC-rich domain (2b1-4, 3521-3555) was identified as the minimum destabilizing element.
- The decay process is directional (3' to 5') and requires ATP hydrolysis and Mg2+.
- The CDE domain (3535-3555) within 2b1-4 is sufficient for protein binding and competes with SERCA2b mRNA decay.
Conclusions:
- The minimum destabilizing element for SERCA2b mRNA decay is located within the 3535-3555 sequence.
- This decay involves specific nuclear protein factors that bind to this region.
- The process likely involves a multimeric protein complex and requires ATP and Mg2+.
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