Beke-Somfai Lab: Biomolecular Self-Assembly
Founded in 08/2015, the group is focused on biologically relevant molecules and macromolecular complexes, where intermolecular interactions play a pivotal role in manifesting biological function. We are particularly interested in molecular level understanding of structure, function and mechanisms of membrane active compounds. Our aim is to study and design natural and nature-mimicking species which can be further developed in biomedical applications targeting organism-specific membranes.
Research Interests
Natural antimicrobial peptides or host defense peptides constitute a part of the innate immune system of the host organisms and help in the fight against invading pathogens. They have a broad-spectrum activity against various bacteria, and fungi, in addition, they also show antiviral and anticancer properties. Their mechanism of action **involves disruption of target cell membranes, moreover, they can elicit immunoregulatory actions as well. They represent a promising novel tool to combat multidrug-resistant bacteria, the emerging number of which represents a global threat. Beyond their **applicability in human health care, antimicrobial peptides have potential in various fields, e.g. as biopesticide components to protect cultured plants in agriculture, nutrient additives in livestock, food preservatives in food industry, or even in wastewater treatment.
Despite the many advantages of natural antimicrobial peptides over common antibiotics, their proteolytic sensitivity can limit their medical use. In this regard, peptidomimetic agents called foldamers with structural and folding properties comparable to their natural templates can represent a good alternative. Non-natural peptides display excellent self-organising properties ranging from toxic amyloid oligomers to ion channel formation, with tunable applications ranging from tissue engineering through antiviral and antibacterial therapeutics to supramolecular polymer tubes.
Selected related publications
Extracellular vesicles (EVs) are biological nanoparticles, surrounded by a phospholipid bilayer and released by various cells into the extracellular space. They are classified based on their cellular origin, biogenesis and physicochemical properties. They can carry different type of biomolecules (such as DNA, RNA, proteins, phospholipids) which are characteristic to the particular cells producing them. Besides membrane inserted proteins, in vivo systems can also contain biomolecules adsorbed on their surface, known as protein corona. Evs are important mediators of intracellular communication and are involved in many physiological and pathological processes, so they may provide a wealth of information for early diagnosis and treatment of various diseases. Beyond these roles, they can be used as potential delivery vehicles for different drugs, food nutrient, inorganic nanoparticles etc. Therefore, the composition, modulation and characterization of protein corona is essential, as can influence their bioavailability, bio-distribution and their applicability.
Selected related publications
Selected related publications
Expertise
- Circular and Linear dichroism
- UV/Vis absorption spectroscopy
- Computational biophysics
- Sum-frequency generation spectroscopy
- Supported lipid bilayers
- Liposomal systems
- Bicelles
Members
| Tamás Beke-Somfai | Group leader |
| Tünde Juhász | Senior researcher |
| Imola Csilla Szigyártó | Senior researcher |
| Natália Tőkési | Senior researcher |
| Omaima Barkaoui | PhD student |
| Fiza Faiz | PhD student |
| Zineb Medjeldi | PhD student |
| Olivér Pavela | PhD student |
| Klinsalee Rachaneekorn | PhD student |
| Tasvilla Sonallya | PhD student |
| Ludwe Saliwa | Undergraduate student |
| Katja Vasmatics | Undergraduate student |
| Rita Grádné Szabó | Assistant |
| Sohini Chakraborty | Alumni | |
| Gergő Gyarmathy | Alumni | |
| Tamás Keszthelyi | Alumni | |
| Gergely Kohut | Alumni | |
| Benjámin Kovács | Alumni | |
| Bence Kővágó | Alumni | |
| Bilal Nizami | Alumni | |
| Mayra Quemé Peña | Alumni | |
| Maria Ricci | Alumni | |
| Priyanka Singh | Alumni | |
| Vignesh Udyavara Nagaraj | Alumni | |
| Kamilla Ujvári | Alumni | |
| Ferenc Zsila | Alumni | |
| Kamal el Battioui | Alumni |














