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Molecular Biology

D-Index
57
Citations
17404
World Ranking
2131
National Ranking
169

Overview

Sabine Dietmann is affiliated with the University of Cambridge in the United Kingdom. Their research primarily focuses on the fields of Biochemistry, Genetics, and Molecular Biology, with a significant emphasis on Molecular Biology as a subfield. Other subfields of their work include Genetics, Cancer Research, Pediatrics, Perinatology and Child Health, and Surgery.

The scientist's main topics of study encompass pluripotent stem cells research, renal and related cancers, CRISPR and genetic engineering, epigenetics and DNA methylation, RNA modifications and cancer, cancer-related gene regulation, as well as genomics and chromatin dynamics.

Some of the recently published papers associated with their research include:

  • Artificial intelligence: A powerful paradigm for scientific research, 2021, The Innovation
  • Technologies and perspectives for achieving carbon neutrality, 2021, The Innovation
  • Capture of Mouse and Human Stem Cells with Features of Formative Pluripotency, 2020, Cell Stem Cell
  • Mitochondrial RNA modifications shape metabolic plasticity in metastasis, 2022, Nature
  • Sequence- and structure-specific cytosine-5 mRNA methylation by NSUN6, 2020, Nucleic Acids Research

Frequent co-authors who collaborate with Sabine Dietmann include:

  • M. Azim Surani
  • Thorold W. Theunissen
  • Walfred W. C. Tang
  • Chen Dong
  • Kyoung-mi Park

The scientist publishes often in several key venues such as:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Cell Stem Cell
  • Nature Communications
  • Science Advances
  • Cell Reports

Best Publications

  • Technologies and perspectives for achieving carbon neutrality

    Fang Wang;Jean Damascene Harindintwali;Zhizhang Yuan;Zhizhang Yuan;Min Wang

  • Human primary liver cancer–derived organoid cultures for disease modeling and drug screening

    Laura Broutier;Gianmarco Mastrogiovanni;Monique M.A. Verstegen;Hayley E. Francies

  • Artificial Intelligence: A Powerful Paradigm for Scientific Research

    Yongjun Xu;Xin Liu;Xin Cao;Changping Huang

  • SOX17 Is a Critical Specifier of Human Primordial Germ Cell Fate

    Naoko Irie;Naoko Irie;Leehee Weinberger;Walfred W.C. Tang;Walfred W.C. Tang;Toshihiro Kobayashi;Toshihiro Kobayashi

  • A Unique Gene Regulatory Network Resets the Human Germline Epigenome for Development

    Walfred W.C. Tang;Walfred W.C. Tang;Sabine Dietmann;Naoko Irie;Naoko Irie;Harry G. Leitch

  • Aberrant methylation of tRNAs links cellular stress to neuro‐developmental disorders

    Sandra Blanco;Sabine Dietmann;Joana V Flores;Shobbir Hussain

  • NSun2-Mediated Cytosine-5 Methylation of Vault Noncoding RNA Determines Its Processing into Regulatory Small RNAs

    Shobbir Hussain;Abdulrahim A. Sajini;Sandra Blanco;Sabine Dietmann

  • NANOG-dependent function of TET1 and TET2 in establishment of pluripotency

    Yael Costa;Junjun Ding;Thorold W. Theunissen;Francesco Faiola

  • Metformin Restores CNS Remyelination Capacity by Rejuvenating Aged Stem Cells

    Björn Neumann;Roey Baror;Chao Zhao;Michael Segel

  • Specification and epigenetic programming of the human germ line.

    Walfred W. C. Tang;Toshihiro Kobayashi;Naoko Irie;Sabine Dietmann;Sabine Dietmann

  • Stem cell function and stress response are controlled by protein synthesis

    Sandra Blanco;Roberto Bandiera;Martyna Popis;Shobbir Hussain

  • Exit from Pluripotency Is Gated by Intracellular Redistribution of the bHLH Transcription Factor Tfe3

    Joerg Betschinger;Jennifer Nichols;Sabine Dietmann;Philip D. Corrin

  • Oligodendrocyte Progenitor Cells Become Regionally Diverse and Heterogeneous with Age.

    Sonia Olivia Spitzer;Sergey Sitnikov;Yasmine Kamen;Kimberley Anne Evans

  • Principles of early human development and germ cell program from conserved model systems

    Toshihiro Kobayashi;Toshihiro Kobayashi;Haixin Zhang;Walfred W. C. Tang;Walfred W. C. Tang;Naoko Irie;Naoko Irie

  • A tripartite transcription factor network regulates primordial germ cell specification in mice

    Erna Magnúsdóttir;Erna Magnúsdóttir;Erna Magnúsdóttir;Sabine Dietmann;Kazuhiro Murakami;Kazuhiro Murakami;Ufuk Günesdogan;Ufuk Günesdogan

  • Epigenetic resetting of human pluripotency.

    Ge Guo;Ferdinand von Meyenn;Maria Rostovskaya;James Clarke

  • A fully automatic evolutionary classification of protein folds: Dali Domain Dictionary version 3

    Sabine Dietmann;Jong Park;Cedric Notredame;Andreas Heger

  • Deficient methylation and formylation of mt-tRNA Met wobble cytosine in a patient carrying mutations in NSUN3

    Lindsey Van Haute;Sabine Dietmann;Laura Kremer;Shobbir Hussain

  • Genetic Exploration of the Exit from Self-Renewal Using Haploid Embryonic Stem Cells

    Martin Leeb;Sabine Dietmann;Maike Paramor;Hitoshi Niwa

  • Characterizing 5-methylcytosine in the mammalian epitranscriptome

    Shobbir Hussain;Jelena Aleksic;Sandra Blanco;Sabine Dietmann

Frequent Co-Authors

M. Azim Surani
M. Azim Surani University of Cambridge
Austin Smith
Austin Smith University of Exeter
Michaela Frye
Michaela Frye University of Cambridge
Paul Bertone
Paul Bertone University of Cambridge
Wolf Reik
Wolf Reik Babraham Institute
Jennifer Nichols
Jennifer Nichols University of Cambridge
Patrick F. Chinnery
Patrick F. Chinnery University of Cambridge
Hans-Werner Mewes
Hans-Werner Mewes Technical University of Munich
Brian Hendrich
Brian Hendrich University of Cambridge
Dusko Ilic
Dusko Ilic King's College London

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