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Molecular Biology
Russia
2023

D-Index & Metrics

Molecular Biology

D-Index
67
Citations
12931
World Ranking
1587
National Ranking
1

Research.com Recognitions

  • 2023 - Research.com Molecular Biology in Russia Leader Award

Overview

Grigory L. Dianov is affiliated with Novosibirsk State University in the Russian Federation. Their research primarily falls within the domain of Biochemistry, Genetics and Molecular Biology, with a specific focus on Molecular Biology, Cell Biology, Oncology, and Cancer Research.

The scientist's work encompasses several main topics, including DNA Repair Mechanisms, Genomics and Chromatin Dynamics, RNA Research and Splicing, Ubiquitin and proteasome pathways, Microtubule and mitosis dynamics, RNA Interference and Gene Delivery, and Mitochondrial Function and Pathology.

Dianov has published research in various well-regarded scientific venues, including:

  • Nucleic Acids Research
  • Nature Communications
  • The FASEB Journal
  • PLoS ONE
  • NAR Cancer

Recent papers include:

  • "A unified model for the G1/S cell cycle transition" (2020), published in Nucleic Acids Research
  • "The NUCKS1-SKP2-p21/p27 axis controls S phase entry" (2021), published in Nature Communications
  • "Src-mediated phosphorylation of GAPDH regulates its nuclear localization and cellular response to DNA damage" (2020), published in The FASEB Journal
  • "Mild phenotype of knockouts of the major apurinic/apyrimidinic endonuclease APEX1 in a non-cancer human cell line" (2021), published in PLoS ONE
  • "The role of Sp1 in the detection and elimination of cells with persistent DNA strand breaks" (2020), published in NAR Cancer

Their frequent collaborators include Samuel Hume, Kristijan Ramadan, Cláudia P. Grou, Pauline Lascaux, and Vincenzo D'Angiolella. These coauthors have contributed to multiple joint publications over time.

Best Publications

  • Mammalian Base Excision Repair: the Forgotten Archangel

    Grigory L. Dianov;Ulrich Hübscher

  • Generation of single-nucleotide repair patches following excision of uracil residues from DNA.

    G Dianov;A Price;T Lindahl

  • Activity-Based Chemical Proteomics Accelerates Inhibitor Development for Deubiquitylating Enzymes

    Mikael Altun;Holger B. Kramer;Lianne I. Willems;Jeffrey L. McDermott

  • Repair pathways for processing of 8-oxoguanine in DNA by mammalian cell extracts.

    Grigory Dianov;Claus Bischoff;Jason Piotrowski;Vilhelm A. Bohr

  • Reconstitution of the DNA base excision—repair pathway

    Grigory Dianov;Tomas Lindahl

  • Role of DNA polymerase beta in the excision step of long patch mammalian base excision repair.

    Grigory L. Dianov;Rajendra Prasad;Samuel H. Wilson;Vilhelm A. Bohr

  • Werner syndrome protein interacts with human flap endonuclease 1 and stimulates its cleavage activity.

    Robert M. Brosh;Cayetano von Kobbe;Joshua A. Sommers;Parimal Karmakar

  • Inhibiting WEE1 Selectively Kills Histone H3K36me3-Deficient Cancers by dNTP Starvation.

    Sophia X. Pfister;Enni Markkanen;Yanyan Jiang;Sovan Sarkar

  • FEN1 stimulation of DNA polymerase beta mediates an excision step in mammalian long patch base excision repair.

    Rajendra Prasad;Grigory L. Dianov;Vilhelm A. Bohr;Samuel H. Wilson

  • Repair of abasic sites in DNA

    Grigory L Dianov;Kate M Sleeth;Irina I Dianova;Sarah L Allinson

  • Isolation of a small molecule inhibitor of DNA base excision repair

    Srinivasan Madhusudan;Fiona Smart;Paul Shrimpton;Jason L. Parsons

  • Human DNA polymerase β initiates DNA synthesis during long‐patch repair of reduced AP sites in DNA

    Andrej Ja. Podlutsky;Irina I. Dianova;Vladimir N. Podust;Vilhelm A. Bohr

  • Poly ADP-ribose polymerase-1: an international molecule of mystery.

    Bethany C. Woodhouse;Grigory L. Dianov

  • Reduced RNA polymerase II transcription in intact and permeabilized Cockayne syndrome group B cells

    Adayabalam S. Balajee;Alfred May;Grigory L. Dianov;Errol C. Friedberg

  • Repair of uracil residues closely spaced on the opposite strands of plasmid DNA results in double-strand break and deletion formation.

    Grigory L. Dianov;Tatyana V. Timehenko;Olga I. Sinitsina;Andrew V. Kuzminov

  • CHIP-Mediated Degradation and DNA Damage-Dependent Stabilization Regulate Base Excision Repair Proteins

    Jason L. Parsons;Phillip S. Tait;David Finch;Irina I. Dianova

  • An Oxidative Damage-specific Endonuclease from Rat Liver Mitochondria

    Deborah L. Croteau;Deborah L. Croteau;Colette M.J. ap Rhys;Edgar K. Hudson;Grigory L. Dianov

  • Interaction of human AP endonuclease 1 with flap endonuclease 1 and proliferating cell nuclear antigen involved in long-patch base excision repair.

    Irina I. Dianova;Vilhelm A. Bohr;Grigory L. Dianov

  • Base excision repair in nuclear and mitochondrial DNA.

    Grigory L Dianov;Nadja Souza-Pinto;Simon G Nyaga;Tanja Thybo

  • XRCC1-DNA polymerase beta interaction is required for efficient base excision repair

    Irina I. Dianova;Kate M. Sleeth;Sarah L. Allinson;Jason L. Parsons

Frequent Co-Authors

Benedikt M. Kessler
Benedikt M. Kessler University of Oxford
Vilhelm A. Bohr
Vilhelm A. Bohr University of Copenhagen
Alexander V. Mazin
Alexander V. Mazin Drexel University
Thomas Helleday
Thomas Helleday Karolinska Institute
Sovan Sarkar
Sovan Sarkar University of Birmingham
Magnar Bjørås
Magnar Bjørås Norwegian University of Science and Technology
Roman Fischer
Roman Fischer University of Oxford
Michael Weinfeld
Michael Weinfeld University of Alberta
Robert M. Brosh
Robert M. Brosh National Institutes of Health
Ian D. Hickson
Ian D. Hickson University of Copenhagen

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