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Molecular Biology

D-Index
42
Citations
15360
World Ranking
2997
National Ranking
1422

Overview

Sebastian Kadener is affiliated with Brandeis University in the United States. Their research primarily focuses on the field of Biochemistry, Genetics, and Molecular Biology, with a significant number of publications in this area.

Their subfields of study include:

  • Molecular Biology
  • Cancer Research
  • Plant Science
  • Endocrine and Autonomic Systems
  • Aging

Key research topics covered by Sebastian Kadener include:

  • Circular RNAs in diseases
  • MicroRNA in disease regulation
  • RNA Research and Splicing
  • RNA modifications and cancer
  • Cancer-related molecular mechanisms research
  • Circadian rhythm and melatonin
  • Genetics, Aging, and Longevity in Model Organisms

Frequent publication venues for Kadener's work are:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Science Advances
  • EMBO Molecular Medicine
  • eLife
  • Cell Reports

Some recent papers include:

  • Best practice standards for circular RNA research, 2022, Nature Methods
  • A Parkinson's disease CircRNAs Resource reveals a link between circSLC8A1 and oxidative stress, 2020, EMBO Molecular Medicine
  • A lncRNA survey finds increases in neuroprotective LINC-PINT in Parkinson's disease substantia nigra, 2020, Aging Cell
  • SARS-CoV-2 Nsp14 mediates the effects of viral infection on the host cell transcriptome, 2022, eLife

Frequent co-authors collaborating with Sebastian Kadener are:

  • Inés Lucía Patop
  • Nagarjuna Reddy Pamudurti
  • Ane Martín Anduaga
  • Osnat Bartok
  • Aishwarya Krishnamoorthy

Best Publications

  • circRNA Biogenesis Competes with Pre-mRNA Splicing

    Reut Ashwal-Fluss;Markus Meyer;Nagarjuna Reddy Pamudurti;Andranik Ivanov

  • Circular RNAs in the Mammalian Brain Are Highly Abundant, Conserved, and Dynamically Expressed

    Agnieszka Rybak-Wolf;Christin Stottmeister;Petar Glažar;Marvin Jens

  • Translation of CircRNAs

    Nagarjuna Reddy Pamudurti;Osnat Bartok;Marvin Jens;Reut Ashwal-Fluss

  • Past, present, and future of circRNAs.

    Ines Lucia Patop;Stas Wüst;Sebastian Kadener

  • A Slow RNA Polymerase II Affects Alternative Splicing In Vivo

    Manuel de la Mata;Claudio R Alonso;Sebastián Kadener;Juan P Fededa

  • circRNAs in Cancer

    Ines Lucia Patop;Sebastian Kadener;Sebastian Kadener

  • Coupling of Transcription with Alternative Splicing: RNA Pol II Promoters Modulate SF2/ASF and 9G8 Effects on an Exonic Splicing Enhancer

    Paula Cramer;Javier F Cáceres;Demián Cazalla;Sebastián Kadener

  • PERIOD1-Associated Proteins Modulate the Negative Limb of the Mammalian Circadian Oscillator

    Steven A. Brown;Steven A. Brown;Juergen Ripperger;Juergen Ripperger;Sebastian Kadener;Sebastian Kadener;Fabienne Fleury-Olela;Fabienne Fleury-Olela

  • High-accuracy determination of internal circadian time from a single blood sample

    Nicole Wittenbrink;Bharath Ananthasubramaniam;Mirjam Münch;Barbara Koller

  • Transcriptional activators differ in their abilities to control alternative splicing

    Guadalupe Nogués;Sebastián Kadener;Paula Cramer;David Bentley

  • Clockwork Orange is a transcriptional repressor and a new Drosophila circadian pacemaker component

    Sebastian Kadener;Dan Stoleru;Michael McDonald;Pipat Nawathean

  • A role for microRNAs in the Drosophila circadian clock

    Sebastian Kadener;Jerome S. Menet;Ken Sugino;Michael D. Horwich

  • CircRNAs in the brain.

    Mor Hanan;Hermona Soreq;Sebastian Kadener

  • Antagonistic effects of T‐Ag and VP16 reveal a role for RNA pol II elongation on alternative splicing

    Sebastián Kadener;Paula Cramer;Guadalupe Nogués;Demián Cazalla

  • Regulation of alternative splicing by a transcriptional enhancer through RNA pol II elongation.

    Sebastián Kadener;Juan Pablo Fededa;Michael Rosbash;Alberto R. Kornblihtt

  • Genome-wide identification of targets of the drosha–pasha/DGCR8 complex

    Sebastian Kadener;Joseph Rodriguez;Katharine Compton Abruzzi;Yevgenia L. Khodor

  • Coordination between transcription and pre-mRNA processing.

    P. Cramer;A. Srebrow;S. Kadener;S. Werbajh

  • Alternative Splicing Regulates Biogenesis of miRNAs Located across Exon-Intron Junctions

    Ze’ev Melamed;Asaf Levy;Asaf Levy;Reut Ashwal-Fluss;Galit Lev-Maor

  • A Parkinson’s disease CircRNAs Resource reveals a link between circSLC8A1 and oxidative stress

    Mor Hanan;Alon Simchovitz;Nadav Yayon;Shani Vaknine

  • A recessive mutant of Drosophila Clock reveals a role in circadian rhythm amplitude

    Ravi Allada;Sebastian Kadener;Namrata Nandakumar;Michael Rosbash

Frequent Co-Authors

Michael Rosbash
Michael Rosbash Brandeis University
Alberto R. Kornblihtt
Alberto R. Kornblihtt University of Buenos Aires
Hermona Soreq
Hermona Soreq Hebrew University of Jerusalem
Manuel Garber
Manuel Garber University of Massachusetts Chan Medical School
Maxim N. Artyomov
Maxim N. Artyomov Washington University in St. Louis
Bart Deplancke
Bart Deplancke École Polytechnique Fédérale de Lausanne
Francisco E. Baralle
Francisco E. Baralle International Centre for Genetic Engineering and Biotechnology
Nikolaus Rajewsky
Nikolaus Rajewsky Max Delbrück Center for Molecular Medicine
David Bentley
David Bentley University of Colorado Denver
Norbert Perrimon
Norbert Perrimon Harvard University

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