Area of research
Physiology · Molecular Biology
Research interest
Research interests include Amyloid (mycology), Chemistry, Nanotechnology, Biophysics, Amyloidosis, and Terminal (telecommunication).
<i>Helicobacter pylori</i> CagA protein is a potent and broad-spectrum amyloid inhibitor
Multiple system atrophy-associated oligodendroglial protein p25α stimulates formation of novel α-synuclein strain with enhanced neurodegenerative potential
C subunit of the ATP synthase is an amyloidogenic calcium dependent channel-forming peptide with possible implications in mitochondrial permeability transition
Half a century of amyloids: past, present and future
Accelerated Amyloid Beta Pathogenesis by Bacterial Amyloid FapC
Biochemical mechanisms of aggregation in TGFBI-linked corneal dystrophies
Nanosilver Mitigates Biofilm Formation via FapC Amyloidosis Inhibition
Mechanistic Understanding of the Interactions between Nano-Objects with Different Surface Properties and α-Synuclein
Detection of Pathogenic Biofilms with Bacterial Amyloid Targeting Fluorescent Probe, CDy11
Cooperative folding of a polytopic α-helical membrane protein involves a compact N-terminal nucleus and nonnative loops
Sequential pH-driven dimerization and stabilization of the N-terminal domain enables rapid spider silk formation
Folding energetics and oligomerization of polytopic α-helical transmembrane proteins
Proliferation of amyloid-β42 aggregates occurs through a secondary nucleation mechanism
A Ser residue influences the structure and stability of a Pro-kinked transmembrane helix dimer