Publications by authors named "P V Bashkirov"

Gene transfection is a fundamental technique in the fields of biological research and therapeutic innovation. Due to their biocompatibility and membrane-mimetic properties, lipid vectors serve as essential tools in transfection. The successful delivery of genetic material into the cytoplasm is contingent upon the fusion of the vector and cellular membranes, which enables hydrophilic polynucleic acids to traverse the hydrophobic barriers of two intervening membranes.

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Advancements in medicine and pharmacology have led to the development of systems that deliver biologically active molecules inside cells, increasing drug concentrations at target sites. This improves effectiveness and duration of action and reduces side effects on healthy tissues. Cell-penetrating peptides (CPPs) show promise in this area.

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Article Synopsis
  • Adaptive self-assembly of supramolecular protein structures is crucial for dynamic living matter, but monitoring the formation of larger protein complexes from smaller precursors is challenging.
  • This study introduces a short membrane nanotube (sNT) as a tool for detecting and manipulating protein oligomerization by measuring changes in ionic conductivity due to protein interactions.
  • The researchers used rigid oligoamide foldamer tapes (ROFTs) to facilitate protein binding and shuttling between membranes, demonstrating that these nanotubes can effectively track the assembly of proteins like Annexin-V into complex structures.
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Oxidative stress and ROS are important players in the pathogenesis of numerous diseases. In addition to directly altering proteins, ROS also affects lipids with negative intrinsic curvature such as phosphatidylethanolamine (PE), producing PE adducts and lysolipids. The formation of PE adducts potentiates the protonophoric activity of mitochondrial uncoupling proteins, but the molecular mechanism remains unclear.

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Cellular membranes self-assemble from and interact with various molecular species. Each molecule locally shapes the lipid bilayer, the soft elastic core of cellular membranes. The dynamic architecture of intracellular membrane systems is based on elastic transformations and lateral redistribution of these elementary shapes, driven by chemical and curvature stress gradients.

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