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Biology subjects

Luetkemeyer, A.

Publications and source records attributed to Luetkemeyer, A..

2 recordsLinked to original sources

The DES-p.A120P mutation associated with biventricular arrhythmogenic cardiomyopathy has a dominant-negative effect on desmin filament assembly

Desmin is a muscle-specific intermediate filament protein, which connects different cell organelles and is highly relevant for the structural integrity of cardiomyocytes. Mutations in the DES gene, cause different cardiomyopathies including arrhythmogenic cardiomyopathy. In this study, we functionally investigate the novel genetic variant DES-p.A120P using cell transfection experiments including cardiomyocytes derived from induced pluripotent stem cells in combination with confocal microscopy. These experiments reveal that the filament assembly of desmin-p.A120P is disturbed - even when co-expressed with wild-type desmin. In conclusion, the functional characterization of desmin-p.A120P supports the classification as a pathogenic variant associated with arrhythmogenic cardiomyopathy.

genetics↗

Long-term in vitro exposure of Treponema pallidum to sub-bactericidal doxycycline did not induce resistance: Implications for doxy-PEP and syphilis

Doxycycline post-exposure prophylaxis (doxy-PEP) could significantly reduce syphilis incidence. However, the increase in intermittent doxycycline usage might select resistant Treponema pallidum (T. pallidum) strains. To assess whether resistance to doxycycline could be induced in this pathogen, we exposed the SS14 strain in vitro both intermittently and continuously to a sub-bactericidal doxycycline concentration that still exerts antibiotic pressure. During and after each exposure experiment, we assessed the doxycycline minimal inhibitory concentration in test and control treponemes and performed whole genome sequencing, concluding that no resistance developed. This work suggests that doxycycline-resistant T. pallidum is not an immediate threat for doxy-PEP implementation.

microbiology↗