Atrial fibrillation (AF), the most common progressive cardiac arrhythmia, is associated with serious complications such as stroke and heart failure. Although common risk factors underlie AF onset, in 15% of the affected population, AF may have a genetic cause. Here, we investigated how LMNA variants cause cardiac arrhythmicity. Drosophila melanogaster strains were generated possessing the analogous variants in the Drosophila orthologue of human lamin A/C (LMNA), Lamin C (LamC). Heart wall movements in prepupae were recorded before (BTP) and after (ATP) tachypacing. ATP, flies expressing wild-type LamC, and the variants ÎN and p.R205W showed a significant reduction in heart rate (HR), but the arrhythmia index (AI) was not affected, compared to BTP. By contrast, those expressing p.N210K and p.R264Q showed a significant reduction in HR and increased AI, compared to BTP. p.N210K- and p.R264Q-expressing prepupae showed contrasting effects after pharmacological intervention with microtubule stabilizer taxol. Taxol attenuated the arrhythmogenicity in p.N210K-expressing prepupae, but aggravated it in p.R264Q-expressing prepupae. These findings suggest that different lamin variants trigger distinct molecular pathways that drive arrhythmogenic effects in Drosophila.
Lamin variants cause cardiac arrhythmogenicity in Drosophila.
层粘蛋白变异会导致果蝇出现心律失常
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作者:van Wijk Stan W, Vree Puck, Huiskes Fabries G, van der Palen Reinier L, Liutkute Aiste, Voigt Niels, Wallrath Lori L, Brundel Bianca J J M
| 期刊: | Disease Models & Mechanisms | 影响因子: | 3.300 |
| 时间: | 2025 | 起止号: | 2025 Jul 1; 18(7):dmm052424 |
| doi: | 10.1242/dmm.052424 | 研究方向: | 心血管 |
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