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Biology subjects

Coku, I.

Publications and source records attributed to Coku, I..

2 recordsLinked to original sources

Functional analyses of two novel LRRK2 pathogenic variants in familial Parkinson's disease

BackgroundPathogenic variants in the LRRK2 gene are a common monogenic cause of Parkinsons disease. However, only seven variants have been confirmed to be pathogenic. ObjectivesWe identified two novel LRRK2 variants (H230R and A1440P) and performed functional testing. MethodsWe transiently expressed wildtype, the two new variants, or two known pathogenic mutants (G2019S and R1441G), in HEK-293T cells, with or without LRRK2 kinase inhibitor treatment. We characterized the phosphorylation and kinase activity of the mutants by western blotting. Thermal shift assays were performed to determine the folding and stability of the LRRK2 proteins. ResultsThe two variants were found in two large families and segregate with the disease. They display altered LRRK2 phosphorylation and kinase activity. ConclusionsWe identified two novel LRRK2 variants which segregate with the disease. The results of functional testing lead us to propose these two variants as novel causative mutations for familial Parkinsons disease.

genetics↗

CRISPR Activation/Inhibition Experiments Reveal that Expression of Intronic MicroRNA miR-335 Depends on the Promoter Activity of its Host Gene Mest

MicroRNAs are small non-coding RNAs that act as rheostats to modulate gene expression during development, physiology, and disease. Approximately half of mammalian microRNAs are intronic. It is unknown whether intronic miRNA transcription depends on their host gene or a microRNA-specific promoter. Here, we show that CRISPR inhibition of host gene Mest downregulated hosted miR-335 in mouse embryonic stem cells and brain organoids. Reciprocally, CRISPR transactivation of Mest upregulated miR-335. By contrast, activation of miR-335 predicted promoter had no effect. Thus, intronic miR-335 expression depends on the promoter activity of its host gene. This approach could serve to map microRNA promoters.

genomics↗