bioRxiv Science⌕ Search

Biology subjects

Caselli, N.

Publications and source records attributed to Caselli, N..

3 recordsLinked to original sources

Metabolic Rigidity as a Mechanical Barrier to Malaria: Flickering Loss in PKLR-Deficient Erythrocytes

Pyruvate kinase (PK) deficiency is a rare hereditary enzymopathy caused by mutations in the PKLR gene, leading to reduced glycolytic ATP production in red blood cells (RBCs) and contributing to chronic hemolytic anemia. Here, we use high-speed flickering spectroscopy and passive microrheology to assess how ATP depletion reshapes the nanomechanical properties of RBC membranes. Compared to healthy controls, PKLR-mutant erythrocytes exhibit marked reductions in ATP-dependent flickering amplitude and membrane fluidity, consistent with impaired metabolic elasticity. Strikingly, when infected with Plasmodium yoelii, these metabolically rigidified cells retain mechanical properties that appear to hinder parasite-induced membrane remodeling. By mapping single-cell viscoelastic landscapes across healthy, mutated, infected and coinfected mouse RBC populations, we uncover a potential biomechanical barrier against malaria imposed by glycolytic insufficiency. These findings highlight a mechanobiological axis of host resistance and position label-free flickering analysis as a powerful tool for diagnosing RBC enzymopathies and probing infection susceptibility at the single-cell level.

biophysics↗

Chromosomal Integrons are Genetically and Functionally Isolated Units of Genomes

Integrons are genetic elements that increase the evolvability of bacteria by capturing new genes and stockpiling them in arrays. Sedentary chromosomal integrons (SCIs), can be massive and highly stabilized structures encoding hundreds of genes, whose function remains generally unknown. SCIs have co-evolved with the host for aeons and are highly intertwined with their physiology from a mechanistic point of view. But, paradoxically, other aspects, like their variable content and location within the genome, suggest a high genetic and functional independence. In this work, we have explored the connection of SCIs to their host genome using as a model the Superintegron (SI), a 179-cassette long SCI in the genome of Vibrio cholerae N16961. We have relocated and deleted the SI using SeqDelTA, a novel method that allows to counteract the strong stabilization conferred by toxin-antitoxin systems within the array. We have characterized in depth the impact in V. choleraes physiology, measuring fitness, chromosome replication dynamics, persistence, transcriptomics, phenomics and virulence. The deletion of the SI did not produce detectable effects in any condition, proving that -despite millions of years of co-evolution-, SCIs are genetically and functionally isolated units of genomes.

microbiology↗

Dual mechanical impact of β-escin on model lipid membranes

Using artificially reconstituted membranes based on structurally liquidlike phospholipids, we have performed an experimental study on the mechanical impact of the saponin {beta}-aescin, aka escin, a natural biosurfactant extracted from the seeds of the horse chestnut tree Aesculus hippocastanum. The paper focusses on the modulable interaction of escin with DMPC in model membranes in the form of bilayer vesicles and Langmuir monolayers. As regarding to their dual mechanical membrane behavior being both soft solids and viscoelastic fluids, we have outlined the principal energetic and kinetic features describing the insertion of escin as transversally adsorbed or longitudinally integrated within the model membranes. At connection with the structural phase behavior assessed by dedicated microscopies of surface fluorescence and Brewster angle reflectivity, these hybrid escin / phospholipid membranes have been revealed to possess dual mechanical properties connected to their structural rigidness and fluidity behaving both in one way and another. In particular, we observe a soft glassy rheology typical for liquid-crystalline ordered phases at low temperature, which turns into a fluidlike viscoelasticity characteristic of the disordered phases at high physiological temperature. These original results have been discussed in a physicochemical perspective that may pave new avenues of material engineering and / or pharmacological design exploiting the dual mechanical impact of escin as a mechanical modulator of the cellular membrane.

biophysics↗