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Gene structure and enzymatic activity of mouse eosinophil-associated ribonuclease 2
A L McDevitt1, M S Deming, H F Rosenberg
1Eosinophil Biology Unit, Laboratory of Host Defenses 10/11N104, NIAID / National Institutes of Health, 9000 Rockville Pike, Bethesda, MD 20892-1886, USA.
Abstract:
Mouse eosinophil-associated ribonuclease-2 (mEAR-2) is one of a cluster of genes identified in the genome of the mouse Mus musculus that are highly divergent orthologs of the primate ribonucleases, eosinophil-derived neurotoxin (EDN) and eosinophil cationic protein (ECP). Northern analysis revealed expression of genes hybridizing to mEAR-2 in mouse lung, liver and spleen tissues. We obtained full-length cDNA by hybridization screening of mouse eosinophil and lung cDNA libraries and by rapid amplification of cDNA ends (RACE) from liver, spleen and lung RNA. Using these methods we have isolated the 195 base pair (bp) 3' untranslated region (UTR) that includes a typical polyadenylation signal preceding a poly A tail and the 5' UTR which includes 63-71 bp and three distinct transcriptional start sites. Using unidirectional PCR we isolated a 361-bp 5' promoter region and delineated the intronic / exonic boundaries which include a non-coding exon 1, a single intron, and a coding exon 2, a structure that is typical of genes of the RNase A superfamily. Consensus sites for PU.1 and EoTF, both active as intronic enhancer elements of the gene encoding EDN, are also present in the intron of the gene encoding mEAR-2. The catalytic activity of recombinant baculovirus-derived mEAR-2 is similar to that of rhEDN from this source, with catalytic constants k(cat)/K(m)=5.6x10(6) M(-1) s(-1) and 10.5x10(6) M(-1) s(-1), respectively, against a standard yeast tRNA substrate. Sequence analysis of the non-coding regions and enzymatic characterization of the gene product provide further evidence indicating that mEAR-2 is a structural and functional ortholog of primate EDNs and ECPs.
Insights
Mouse eosinophil-associated ribonuclease-2 (mEAR-2) is a functional ortholog of primate eosinophil ribonucleases. This study characterizes its gene structure, expression, and enzymatic activity, confirming its similarity to EDN and ECP.
Area of Science:
- Molecular Biology
- Genetics
- Biochemistry
Background:
- Mouse eosinophil-associated ribonuclease-2 (mEAR-2) is a divergent ortholog of primate eosinophil ribonucleases.
- Primate eosinophil ribonucleases include eosinophil-derived neurotoxin (EDN) and eosinophil cationic protein (ECP).
Purpose of the Study:
- To characterize the gene structure, expression, and enzymatic activity of mEAR-2.
- To determine if mEAR-2 is a functional ortholog of primate EDNs and ECPs.
Main Methods:
- Northern analysis to detect mEAR-2 expression in mouse tissues.
- cDNA library screening and RACE to obtain full-length mEAR-2 cDNA.
- PCR to isolate the promoter region and delineate gene structure.
- Recombinant protein expression and enzymatic assays to determine catalytic activity.
Main Results:
- mEAR-2 expression was detected in mouse lung, liver, and spleen.
- Full-length cDNA, including 5' and 3' UTRs and a promoter region, was isolated.
- The mEAR-2 gene structure, with a non-coding exon 1 and coding exon 2, is typical of the RNase A superfamily.
- Consensus sites for PU.1 and EoTF were identified in the mEAR-2 intron.
- Recombinant mEAR-2 exhibited catalytic activity similar to rhEDN against yeast tRNA.
Conclusions:
- mEAR-2 is a structural and functional ortholog of primate EDNs and ECPs.
- The characterized gene structure and enzymatic activity support its role as a functional ribonuclease.