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Biology subjects

Morch, A.

Publications and source records attributed to Morch, A..

3 recordsLinked to original sources

Immune receptor LILRB1 mediates cis-signalling which is targeted by RIFINs of the malaria parasite

The malaria parasite, Plasmodium falciparum, replicates within human erythrocytes, where it is susceptible to clearance by immune cells. It uses erythrocyte surface proteins, the RIFINs, to signal through immune receptors and to suppress immune cell function. Previous studies identified two groups of RIFINs which bind different sites on inhibitory immune receptor LILRB1. While some RIFINs bind an elongated LILRB1 conformation, triggering inhibitory immune signalling in trans, we show that other RIFINs stabilise a c-shaped LILRB1 conformation. This buckled LILRB1 binds MHC class I found on the same immune cell, which triggers inhibitory cis signalling. Therefore, LILRB1 exists in dynamic equilibrium, with an elongated conformation able to bind to ligands in trans on a target cell, while a buckled conformation signals through MHC class I in cis, setting the signalling threshold. Different clades of RIFINs exist to mediate inhibitory signalling through each of these LILRB1 conformations to prevent parasite destruction.

microbiology↗

Community Challenge towards Consensus on Characterization of Biological Tissue: C4Bios First Findings

This study investigates methodological variability across various expert laboratories worldwide, with regards to characterizing the mechanical properties of biological tissues. Two testing rounds were conducted on the specific use case of uniaxial tensile testing of porcine aorta. In the first round, 24 labs were invited to apply their established methods to assess inter-laboratory variability. This revealed significant methodological diversity and associated variability in the stress-stretch results, underscoring the necessity for a standardized approach. In the second round, a consensus protocol was collaboratively developed and adopted by 19 labs in an attempt to minimize variability. This involved standardized sample preparation and uniformity in testing protocol, including the use of a common cutting and thickness measurement tool. Despite protocol harmonization, significant variability persisted across labs, which could not be solely attributed to inherent biological differences in tissue samples. These results illustrate the challenges in unifying testing methods across different research settings, underlining the necessity for further refinement of testing practices. Enhancing consistency in biomechanical experiments is pivotal when comparing results across studies, as well as when using the resulting material properties for in silico simulations in medical research.

bioengineering↗

Insects evolved a monomeric histone-fold domain in the CENP-T protein family

The histone fold domain (HFD) is a conserved protein interaction module that requires stabilization through a handshake interaction with an HFD partner. All HFD proteins known to date form obligate dimers to shield the extensive hydrophobic residues along the HFD. Here, we find that the lepidopteran kinetochore protein CENP-T is soluble as a monomer. We attribute this stability to a structural rearrangement, which leads to the repositioning of the HFD helix 3. This brings a conserved two-helical extension closer to the histone fold, where it takes over the position and function of the CENP-T partner CENP-W. This change has no effect on the DNA binding ability of the lepidopteran CENP-T. Our analysis suggests that the monomeric HFD originated in the last common ancestor of insects, with a possible second independent origin in acariformes, both of which lack CENP-W. Our study highlights an unexpected structural variation in a protein module as conserved and optimized as the HFD providing a unique perspective on the evolution of protein structure and the forces driving it.

cell biology↗