Prof. Ana I. Benítez-Mateos
Prof. Dr.
Ana
Benitez Mateos
Technische Universität München
Professur für Biosystems Chemistry of Natural Products (Prof. Benitez Mateos)
Postadresse
Lichtenbergstr. 4
85748 Garching b. München
Research
Prof. Benítez-Mateos (*1991) forscht auf dem Gebiet der nachhaltigen Biokatalyse zur Synthese von Naturstoffen, die als Arzneimittel, Lebensmittelzusatzstoffe und Agrochemikalien von Bedeutung sind. Ihre Gruppe hat sich zum Ziel gesetzt, hochstabile und effiziente Enzymkaskaden zu entwickeln, indem sie Ansätze aus den Bereichen Bioingenieurwesen, Enzymimmobilisierung und (Strömungs-)Chemie integriert. Ein besonderer Schwerpunkt ihres Labors liegt auf der Aufklärung der molekularen Mechanismen intrinsisch ungeordneter Proteine (IDPs) und deren Anwendungen in der Biotechnologie und Biokatalyse.
Publikationen werden geladen...
Nature Communications
Abstract: Biomolecular condensates can affect enzymatic reactions by locally changing not only concentrations of molecules but also their environment. Since protein conformations can differ between the dense…
Chimia
Abstract: Enzymes are emerging as a central element of green chemistry due to their high selectivity, biodegradability, and biocompatibility. However, their application in biotechnology is often limited by…
ChemCatChem
Abstract: In this perspective article, we celebrate the accomplishments of female-led research groups in biocatalysis. Through this initiative, we aim to showcase the breadth and excellence of women's research…
ACS Sustainable Chemistry and Engineering
Abstract: Cell-free biocatalysis is gaining momentum in producing value-added chemicals, particularly in stepwise reaction cascades. However, the stability of enzyme cascades in industrial settings is often…
Journal of Flow Chemistry
Abstract: Flow biocatalysis has emerged as an empowering tool to boost the potential of enzymatic reactions towards more automatized, sustainable, and generally efficient synthetic processes. In the last…
Nature Communications
Abstract: The mechanisms that underlie the regulation of enzymatic reactions by biomolecular condensates and how they scale with compartment size remain poorly understood. Here we use intrinsically disordered…
Chimia
Abstract: Enzymes are natural catalysts which are gaining momentum in chemical synthesis due to their exquisite selectivity and their biodegradability. However, the cost-efficiency and the sustainability of the…
ChemCatChem
Abstract: l-Pipecolic Acid (l-PA) is a valuable building block for the synthesis of pharmaceuticals such as anesthetics and immunosuppressants. Thus, more efficient and greener strategies are desired for its…
Applied Microbiology and Biotechnology
Abstract: Abstract: Extremophilic microorganisms, which are resistant to extreme levels of temperature, salinity, pH, etc., have become popular tools for biotechnological applications. Due to their availability…
Nature Chemistry
Abstract: Enzyme cascades are a powerful technology to develop environmentally friendly and cost-effective synthetic processes to manufacture drugs, as they couple different biotransformations in sequential…
Sommersemester 2026
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Vortragende/r (Mitwirkende/r)
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16 |
FO
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12 |
FO
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8 |
FO
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1 |
SE
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