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Alternative splicing of an exitron determines the subnuclear localization of the Arabidopsis DNA glycosylase MBD4L under heat stress

Plant J . 2022-04; 
Nicolás Miguel Cecchini , José Roberto Torres , Ignacio Lescano López, Santiago Cobo, Florencia Nota, María Elena Alvarez
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Molecular Biology Reagents The nonspliceable MBD4L.3 variant (MBD4L.3exit) was obtained by synthesis of the N-terminal coding region (1–471 bp, including the exitron sequence) carrying 45 synonymous point mutations (Figure 5a) cloned into a pUC57-Mini plasmid (Genscript, Hong Kong). Get A Quote

摘要

DNA glycosylases are critical enzymes that recognize small base lesions in DNA and trigger their repair to preserve genome integrity. The Arabidopsis MBD4-like (MBD4L) DNA glycosylase improves tolerance to genotoxic stress. This enzyme is encoded by a single gene carrying an exonic intron (exitron) at its 5′ region. Although alternative splicing (AS) of exitrons (protein-coding cryptic introns within exons) is suspected to increase protein diversity, phenotypes associated to exitron removal or retention are only known for a few genes. Here, we show that AS of the MBD4L exitron determines the generation of two enzyme isoforms with different subnuclear localization. Both isoforms conserve the catalytic domain b... More

关键词

DNA glycosylases; DNA repair; MBD4L; exitron; nucleolus; subnuclear distribution.