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D-Index & Metrics

Chemistry

D-Index
62
Citations
15748
World Ranking
8732
National Ranking
4

Overview

Mati Karelson is affiliated with the University of Tartu in Estonia and is active in research spanning Biochemistry, Genetics, and Molecular Biology, with additional contributions to Medicine. Their work primarily focuses on molecular and cancer biology, particularly investigating RNA modifications and cancer-related regulatory mechanisms.

The main fields of study for Mati Karelson include:

  • Biochemistry, Genetics and Molecular Biology
  • Medicine

Their subfields cover a range within biological sciences and public health:

  • Molecular Biology
  • Cancer Research
  • Cell Biology
  • Epidemiology
  • Public Health, Environmental and Occupational Health

Karelson's research addresses several key topics, reflecting a specialized interest in RNA biology and disease mechanisms:

  • RNA modifications and cancer
  • Cancer-related gene regulation
  • Cancer-related molecular mechanisms research
  • Endoplasmic Reticulum Stress and Disease
  • RNA Research and Splicing
  • Autophagy in Disease and Therapy
  • Mosquito-borne diseases and control

Frequent collaborators within their research include:

  • Larisa Ivanova
  • Märt Saarma
  • Esko Kankuri
  • Simona Selberg
  • Neinar Seli

Key publication venues where Karelson has published multiple papers are:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • ACS Omega
  • Molecules
  • International Journal of Molecular Sciences
  • Trends in Pharmacological Sciences

Recent papers authored or co-authored by Mati Karelson include:

  • "Rational Design of Novel Anticancer Small-Molecule RNA m6A Demethylase ALKBH5 Inhibitors," 2021, ACS Omega
  • "The structure and function of YTHDF epitranscriptomic m6A readers," 2023, Trends in Pharmacological Sciences
  • "MANF regulates neuronal survival and UPR through its ER-located receptor IRE1α," 2023, Cell Reports
  • "The Impact of Software Used and the Type of Target Protein on Molecular Docking Accuracy," 2022, Molecules
  • "Small-Molecule Inhibitors of the RNA M6A Demethylases FTO Potently Support the Survival of Dopamine Neurons," 2021, International Journal of Molecular Sciences

Best Publications

  • Quantum-Chemical Descriptors in QSAR/QSPR Studies

    Mati Karelson;Victor S. Lobanov;Alan R. Katritzky

  • Molecular descriptors in QSAR/QSPR

    Mati. Karelson

  • QSPR: the correlation and quantitative prediction of chemical and physical properties from structure

    Alan R. Katritzky;Victor S. Lobanov;Mati Karelson

  • Quantitative Correlation of Physical and Chemical Properties with Chemical Structure: Utility for Prediction

    Alan R. Katritzky;Minati Kuanar;Svetoslav Slavov;C. Dennis Hall

  • Quantitative measures of solvent polarity.

    Alan R. Katritzky;Dan C. Fara;Hongfang Yang;Kaido Tämm

  • Theoretical treatment of solvent effects on electronic spectroscopy

    Mati M. Karelson;Michael C. Zerner

  • Structurally diverse quantitative structure--property relationship correlations of technologically relevant physical properties

    Alan R. Katritzky;Uko Maran;and Victor S. Lobanov;Mati Karelson

  • AROMATICITY AS A QUANTITATIVE CONCEPT. 7. AROMATICITY REAFFIRMED AS A MULTIDIMENSIONAL CHARACTERISTIC

    Alan R. Katritzky;Mati Karelson;Sulev Sild;and T. Marek Krygowski

  • Correlation of Boiling Points with Molecular Structure. 1. A Training Set of 298 Diverse Organics and a Test Set of 9 Simple Inorganics

    Alan R. Katritzky;Lan Mu;Victor S. Lobanov;Mati Karelson

  • Correlation of the melting points of potential ionic liquids (imidazolium bromides and benzimidazolium bromides) using the CODESSA program.

    Alan R. Katritzky;Ritu Jain;Andre Lomaka;Ruslan Petrukhin

  • QSPR correlation of the melting point for pyridinium bromides, potential ionic liquids.

    Alan R. Katritzky;Andre Lomaka;Ruslan Petrukhin;Ritu Jain

  • Prediction of Critical Micelle Concentration Using a Quantitative Structure−Property Relationship Approach. 1. Nonionic Surfactants

    Paul D. T. Huibers;Victor S. Lobanov;Alan R. Katritzky;Dinesh O. Shah,†,⊥ and

  • Prediction of Gas Chromatographic Retention Times and Response Factors Using a General Quantitative Structure-Property Relationship Treatment

    Alan R. Katritzky;Elena S. Ignatchenko;Richard A. Barcock;Victor S. Lobanov

  • Perspective on the Relationship between Melting Points and Chemical Structure

    Alan R. Katritzky;Ritu Jain;Andre Lomaka;Ruslan Petrukhin

  • Refinement of a Quantitative Structure–Activity Relationship Model for Prediction of Cell-Penetrating Peptide Based Transfection Systems

    Moataz Dowaidar;Jakob Regberg;Dimitar A. Dobchev;Tõnis Lehto

  • QSPR analysis of flash points.

    Alan R. Katritzky;Ruslan Petrukhin;Ritu Jain;Mati Karelson

  • QSPR Studies on Vapor Pressure, Aqueous Solubility, and the Prediction of Water−Air Partition Coefficients

    Alan R. Katritzky;Yilin Wang;Sulev Sild;Tarmo Tamm

  • Discovery of Small Molecules that Activate RNA Methylation through Cooperative Binding to the METTL3-14-WTAP Complex Active Site

    Simona Selberg;Daria Blokhina;Maria Aatonen;Pertti Koivisto

  • Correlation and Prediction of the Refractive Indices of Polymers by QSPR

    Alan R. Katritzky;Sulev Sild;Mati Karelson

  • Quantitative predictions of tautomeric equilibria for 2-, 3-, and 4-substituted pyridines in both the gas phase and aqueous solution: combination of AM1 with reaction field theory

    Mati M. Karelson;Alan R. Katritzky;Miroslaw Szafran;Michael C. Zerner

  • Prediction of Critical Micelle Concentration Using a Quantitative Structure-Property Relationship Approach

    P.D.T. Huibers;V.S. Lobanov;A.R. Katritzky;D.O. Shah

Frequent Co-Authors

Alan R. Katritzky
Alan R. Katritzky University of Florida
Mart Saarma
Mart Saarma University of Helsinki
Andres Merits
Andres Merits University of Tartu
Michael C. Zerner
Michael C. Zerner University of Florida
Robin D. Rogers
Robin D. Rogers University of Alabama
Kalevi Pihlaja
Kalevi Pihlaja University of Turku
Alexandre Varnek
Alexandre Varnek University of Strasbourg
Clifford H. Watson
Clifford H. Watson Centers for Disease Control and Prevention
Geerd H. F. Diercksen
Geerd H. F. Diercksen Max Planck Society
John R. Eyler
John R. Eyler University of Florida

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