Area of research
Molecular Biology · Materials Chemistry
Research interest
Research focused on Intrinsically disordered proteins and Library science, with related work in Computational biology, Genetics, Memphis. Notable publications include 'Classification of Intrinsically Disordered Regions and Proteins', 'Targeting autophagy in ischemic stroke: From molecular mechanisms to clinical therapeutics', and 'DisProt 7.0: a major update of the database of disordered proteins'.
Hallmarks of cellular senescence: biology, mechanisms, regulations
A Comparative Experimental and Computational Study on the Nature of the Pangolin-CoV and COVID-19 Omicron
A Comparative Experimental and Computational Study on the Nature of the Pangolin-CoV and COVID-19 Omicron
Intrinsic disorder may drive the interaction of PROS1 and MERTK in uveal melanoma
Intrinsically Disordered Synthetic Polymers in Biomedical Applications
Intrinsic disorder in PRAME and its role in uveal melanoma
The Sherpa hypothesis: Phenotype-Preserving Disordered Proteins stabilize the phenotypes of neurons and oligodendrocytes
The Sherpa hypothesis: Phenotype-Protecting Disordered Proteins stabilize the phenotypes of neurons and oligodendrocytes
The importance of accessory protein variants in the pathogenicity of SARS-CoV-2
Intrinsic Disorder in BAP1 and Its Association with Uveal Melanoma
Shell Disorder Models Detect That Omicron Has Harder Shells with Attenuation but Is Not a Descendant of the Wuhan-Hu-1 SARS-CoV-2
A Study on the Nature of SARS-CoV-2 Using the Shell Disorder Models: Reproducibility, Evolution, Spread, and Attenuation
Computational, Experimental, and Clinical Evidence of a Specific but Peculiar Evolutionary Nature of (COVID-19) SARS-CoV-2
Shell Disorder Models Detect that Attenuated Omicron has Harder Shells but is not a Descendant of the Wuhan (SARS-CoV-2) Strain
Shell Disorder Models Detect that Attenuated Omicron has Harder Shells but is not a Descendant of the Wuhan (SARS-CoV-2) Strain
Shell Disorder Models Detect that Attenuated Omicron has Harder Shells but is not a Descendant of the Wuhan (SARS-CoV-2) Strain
Targeting autophagy in ischemic stroke: From molecular mechanisms to clinical therapeutics
Carbon-Based Nanomaterials: Promising Antiviral Agents to Combat COVID-19 in the Microbial-Resistant Era
ER Stress in Cardiometabolic Diseases: From Molecular Mechanisms to Therapeutics
A unique view of SARS-CoV-2 through the lens of ORF8 protein
Autoimmunity roots of the thrombotic events after COVID-19 vaccination
Notable sequence homology of the ORF10 protein introspects the architecture of SARS-CoV-2
COVID-19 Vaccines and Thrombosis—Roadblock or Dead-End Street?
Emergence of unique SARS-CoV-2 ORF10 variants and their impact on protein structure and function
Functional impact of titin (TTN) mutations in ocular surface squamous neoplasia
Structural Protein Analysis of Driver Gene Mutations in Conjunctival Melanoma
The structural basis of accelerated host cell entry by SARS‐CoV‐2†
Shell disorder analysis predicts greater resilience of the SARS-CoV-2 (COVID-19) outside the body and in body fluids
Rigidity of the Outer Shell Predicted by a Protein Intrinsic Disorder Model Sheds Light on the COVID-19 (Wuhan-2019-nCoV) Infectivity
Possible Transmission Flow of SARS-CoV-2 Based on ACE2 Features