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Biology subjects

Thomann, M.

Publications and source records attributed to Thomann, M..

2 recordsLinked to original sources

Probing recombinant AAV capsid integrity and genome release under thermal stress by single-molecule interferometric scattering microscopy

Adeno-associated viruses (AAVs) are gaining traction as delivery vehicles for gene therapy although the molecular understanding of AAV-transgene release is still limited. Typically, the process of viral uncoating is investigated (in vitro) through thermal stress, revealing capsid disintegration at elevated temperatures. Here, we used single-molecule interferometric scattering microscopy to assess the (in)stability of different empty and filled AAV preparations. By introducing a heat-stable DNA plasmid as an internal standard, we quantitatively probed the impact of heat on AAVs. Generally, empty AAVs exhibited greater heat resistance than genome-filled particles. Our data also indicate that upon DNA release, the capsids do not transform into empty AAVs, but seem to aggregate or disintegrate. Strikingly, some AAVs exhibited an intermediate state with disrupted capsids but preserved bound genome, a feature that experimentally only emerged following incubation with a nuclease. Our data demonstrate that the thermal uncoating process is highly AAV specific (i.e., can be influenced by serotype, genome, host system). We argue that nuclease treatment in combination with mass photometry can be used as an additional analytical tool for assessing structural integrity of recombinant and/or clinical AAV vectors.

biophysics↗

Positive indirect effects more than balance negative direct effects of ungulate grazers on population growth of a grassland herb

O_LIHerbivores can affect plant population dynamics both directly because of the damage they inflict, and indirectly by moderating conditions for plant recruitment, competition and other biotic interactions. Still, the relative importance of indirect effects of herbivores on plant population dynamics is poorly known. C_LIO_LIWe quantified direct and indirect effects of ungulate grazers on population growth rate of the short-lived perennial herb Primula farinosa, using integral projection models based on demographic data collected over 7 years in exclosures and open control plots at nine grassland sites in southern Sweden. In addition, we explored the mechanisms behind indirect effects with simulations. C_LIO_LIGrazers had negative direct effects on P. farinosa population growth rate, but these were more than balanced by positive indirect effects. The positive indirect effects were mainly linked to improved conditions for plant recruitment. Simulations indicated that indirect effects of ungulate grazers on population growth rate via interactions with pollinators, seed predators, and small herbivores were weak in this system. C_LIO_LISynthesis. The results demonstrate that a full understanding of the effects of grazing on plant population dynamics requires that both direct and indirect effects are identified and quantified. Plant species vary considerably in their response to shifts in grazing regime. Our study sets an example for how the causes of such variation can be assessed, and thus providing a better understanding of the variable effects of herbivores on plant fitness, abundance and distribution. C_LI

ecology↗