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Hassan, N. T.

Publications and source records attributed to Hassan, N. T..

3 recordsLinked to original sources

Structures of vertebrate R2 retrotransposon complexes during target-primed reverse transcription and after second strand nicking

R2 retrotransposons are model site-specific eukaryotic non-LTR retrotransposons that copy-and-paste into gene loci encoding ribosomal RNAs. Recently we demonstrated that avian A-clade R2 proteins achieve efficient and precise insertion of transgenes into their native safe-harbor loci in human cells. The features of A-clade R2 proteins that support gene insertion are not characterized. Here, we report high resolution cryo-electron microscopy structures of two vertebrate A-clade R2 proteins, avian and testudine, at the initiation of target-primed reverse transcription and one structure after cDNA synthesis and second strand nicking. Using biochemical and cellular assays we discover the basis for high selectivity of template use and unique roles for each of the expanded A-clade zinc-finger domains in nucleic acid recognition. Reverse transcriptase active site architecture is reinforced by an unanticipated insertion motif in vertebrate A-clade R2 proteins. Our work brings first insights to A-clade R2 protein structure during gene insertion and enables further improvement and adaptation of R2-based systems for precise transgene insertion.

biochemistry↗

Jumping between Turtles, Fishes, and a Frog: The Unexpected Horizontal Transfer of a DNA Transposon

Horizontal transfer of transposable elements (HTT) has been reported across many species and the impact of such events on genome structure and function has been well described. However, few studies have focused on reptilian genomes, especially HTT events in Testudines (turtles). Here, we investigated the repetitive content of Malaclemys terrapin terrapin (Diamondback turtle) and found a high similarity hAT-6 DNA transposon shared between other turtle species, ray-finned fishes, and a frog. hAT-6 was notably absent in taxa closely related to turtles, such as crocodiles and birds. Successful invasion of DNA transposons into new genomes requires the conservation of specific residues in the encoded transposase, and through structural analysis, these residues were identified indicating retention of functional transposition activity. We document a rare and recent HTT event of a DNA transposon between turtles which are known to have a low genomic evolutionary rate and ancient repeats.

evolutionary biology↗

Fake IDs? Widespread misannotation of DNA Transposons as a General Transcription Factor

The annotation of transposable elements (TEs) is a critical part of our understanding of genomes, however, the accuracy of annotation pipelines remains an issue as TEs are frequently underestimated or misannotated. We report the General Transcription Factor II-I Repeat Domain-Containing Protein 2 (GTF2IRD2) was used to erroneously annotate DNA transposons in a variety of non-mammalian species as GTF2IRD2 contains a 3 fused hAT transposase domain. This study emphasises that the misannotation of TEs as trans-regulatory elements, such as transcription factors, can lead to errors in phylogenetic trees based on orthologs and to significant wasted time for investigators interested in gene regulation and characterising non-mammalian genomes.

genomics↗