Sarah Teichmann (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Sarah Teichmann" in German language version.

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acmedsci.ac.uk (Global: low place; German: low place)

biophysics.org (Global: low place; German: low place)

bl.uk (Global: 1,181st place; German: 2,839th place)

ethos.bl.uk

  • Sarah Amalia Teichmann: Genome evolution : analysing proteomes with new methods. 1999 (bl.uk [abgerufen am 27. August 2023] University of Cambridge).

cam.ac.uk (Global: 569th place; German: 1,059th place)

www2.mrc-lmb.cam.ac.uk

mrc-lmb.cam.ac.uk

tcm.phy.cam.ac.uk

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cell.com (Global: 2,821st place; German: 2,617th place)

crosstalk.cell.com

doi.org (Global: 2nd place; German: 3rd place)

  • Vivien Marx: Sarah Teichmann. In: Nature Methods. Band 13, Nr. 4, 1. April 2016, ISSN 1548-7105, S. 279–279, doi:10.1038/nmeth.3808 (nature.com [abgerufen am 27. August 2023]).
  • M Madan Babu, Nicholas M Luscombe, L Aravind, Mark Gerstein, Sarah A Teichmann: Structure and evolution of transcriptional regulatory networks. In: Current Opinion in Structural Biology. Band 14, Nr. 3, 1. Juni 2004, ISSN 0959-440X, S. 283–291, doi:10.1016/j.sbi.2004.05.004 (sciencedirect.com [abgerufen am 27. August 2023]).
  • Piero Carninci et al.: The Transcriptional Landscape of the Mammalian Genome. In: Science. Band 309, Nr. 5740, 2005, S. 1559–1563, doi:10.1126/science.1112014, PMID 16141072.
  • . Drosophila 12 Genomes Consortium et al.: Evolution of genes and genomes on the Drosophila phylogeny. In: Nature. Band 450, Nr. 7167, 2007, S. 203–218, doi:10.1038/nature06341, PMID 17994087.
  • Derek A. Wilson et al.: DBD––taxonomically broad transcription factor predictions: new content and functionality. In: Nucleic acids research. Band 36, suppl_1, 2007, S. D88–D92, doi:10.1093/nar/gkm964, PMID 18073188, PMC 2238844 (freier Volltext).
  • Emmanuel D. Levy, Sarah A. Teichmann: Structural, Evolutionary, and Assembly Principles of Protein Oligomerization. In: Progress in molecular biology and translational science. 2013, S. 25–51, doi:10.1016/b978-0-12-386931-9.00002-7, PMID 23663964.
  • Marija Liutkute, Ekaterina Samatova, Marina V. Rodnina: Cotranslational Folding of Proteins on the Ribosome. In: Biomolecules. Band 10, Nr. 1, 2020, S. 97–97, doi:10.3390/biom10010097, PMID 31936054, PMC 7023365 (freier Volltext).
  • Kylie R. James et al.: Distinct microbial and immune niches of the human colon. In: Nature immunology. Band 21, Nr. 3, 2020, S. 343–353, doi:10.1038/s41590-020-0602-z, PMID 32066951, PMC 7212050 (freier Volltext).
  • Natsuhiko Kumasaka et al.: Mapping interindividual dynamics of innate immune response at single-cell resolution. In: Nature genetics. Band 55, Nr. 6, 2023, S. 1066–1075, doi:10.1038/s41588-023-01421-y, PMID 37308670.
  • António Miranda et al.: Single-cell transcriptomics for the assessment of cardiac disease. In: Nature reviews. Cardiology. Band 20, Nr. 5, 2022, S. 289–308, doi:10.1038/s41569-022-00805-7, PMID 36539452.
  • Elo Madissoon et al.: A spatially resolved atlas of the human lung characterizes a gland-associated immune niche. In: Nature genetics. Band 55, Nr. 1, 2022, S. 66–77, doi:10.1038/s41588-022-01243-4, PMID 36543915.
  • Uta Hardt et al.: Integrated single cell and spatial transcriptomics reveal autoreactive differentiated B cells in joints of early rheumatoid arthritis. In: Scientific reports. Band 12, Nr. 1, 2022, doi:10.1038/s41598-022-15293-5, PMID 35831338.

ebi.ac.uk (Global: 4,422nd place; German: 5,834th place)

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google.co.uk (Global: 1,519th place; German: low place)

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nature.com (Global: 207th place; German: 227th place)

nih.gov (Global: 5th place; German: 7th place)

ncbi.nlm.nih.gov

  • Piero Carninci et al.: The Transcriptional Landscape of the Mammalian Genome. In: Science. Band 309, Nr. 5740, 2005, S. 1559–1563, doi:10.1126/science.1112014, PMID 16141072.
  • . Drosophila 12 Genomes Consortium et al.: Evolution of genes and genomes on the Drosophila phylogeny. In: Nature. Band 450, Nr. 7167, 2007, S. 203–218, doi:10.1038/nature06341, PMID 17994087.
  • Derek A. Wilson et al.: DBD––taxonomically broad transcription factor predictions: new content and functionality. In: Nucleic acids research. Band 36, suppl_1, 2007, S. D88–D92, doi:10.1093/nar/gkm964, PMID 18073188, PMC 2238844 (freier Volltext).
  • Emmanuel D. Levy, Sarah A. Teichmann: Structural, Evolutionary, and Assembly Principles of Protein Oligomerization. In: Progress in molecular biology and translational science. 2013, S. 25–51, doi:10.1016/b978-0-12-386931-9.00002-7, PMID 23663964.
  • Marija Liutkute, Ekaterina Samatova, Marina V. Rodnina: Cotranslational Folding of Proteins on the Ribosome. In: Biomolecules. Band 10, Nr. 1, 2020, S. 97–97, doi:10.3390/biom10010097, PMID 31936054, PMC 7023365 (freier Volltext).
  • Kylie R. James et al.: Distinct microbial and immune niches of the human colon. In: Nature immunology. Band 21, Nr. 3, 2020, S. 343–353, doi:10.1038/s41590-020-0602-z, PMID 32066951, PMC 7212050 (freier Volltext).
  • Natsuhiko Kumasaka et al.: Mapping interindividual dynamics of innate immune response at single-cell resolution. In: Nature genetics. Band 55, Nr. 6, 2023, S. 1066–1075, doi:10.1038/s41588-023-01421-y, PMID 37308670.
  • António Miranda et al.: Single-cell transcriptomics for the assessment of cardiac disease. In: Nature reviews. Cardiology. Band 20, Nr. 5, 2022, S. 289–308, doi:10.1038/s41569-022-00805-7, PMID 36539452.
  • Elo Madissoon et al.: A spatially resolved atlas of the human lung characterizes a gland-associated immune niche. In: Nature genetics. Band 55, Nr. 1, 2022, S. 66–77, doi:10.1038/s41588-022-01243-4, PMID 36543915.
  • Uta Hardt et al.: Integrated single cell and spatial transcriptomics reveal autoreactive differentiated B cells in joints of early rheumatoid arthritis. In: Scientific reports. Band 12, Nr. 1, 2022, doi:10.1038/s41598-022-15293-5, PMID 35831338.

redirecter.toolforge.org (Global: 29th place; German: 2nd place)

royalsociety.org (Global: 1,939th place; German: 1,532nd place)

sanger.ac.uk (Global: low place; German: low place)

sciencedirect.com (Global: 137th place; German: 321st place)

  • M Madan Babu, Nicholas M Luscombe, L Aravind, Mark Gerstein, Sarah A Teichmann: Structure and evolution of transcriptional regulatory networks. In: Current Opinion in Structural Biology. Band 14, Nr. 3, 1. Juni 2004, ISSN 0959-440X, S. 283–291, doi:10.1016/j.sbi.2004.05.004 (sciencedirect.com [abgerufen am 27. August 2023]).

teichlab.org (Global: low place; German: low place)

thetimes.co.uk (Global: 1,280th place; German: 855th place)

  • Oliver Franklin-Wallis: From pandemics to cancer: the science power list. 27. August 2023, ISSN 0140-0460 (thetimes.co.uk [abgerufen am 27. August 2023]).

web.archive.org (Global: 1st place; German: 1st place)

zdb-katalog.de (Global: 107th place; German: 5th place)

  • Vivien Marx: Sarah Teichmann. In: Nature Methods. Band 13, Nr. 4, 1. April 2016, ISSN 1548-7105, S. 279–279, doi:10.1038/nmeth.3808 (nature.com [abgerufen am 27. August 2023]).
  • M Madan Babu, Nicholas M Luscombe, L Aravind, Mark Gerstein, Sarah A Teichmann: Structure and evolution of transcriptional regulatory networks. In: Current Opinion in Structural Biology. Band 14, Nr. 3, 1. Juni 2004, ISSN 0959-440X, S. 283–291, doi:10.1016/j.sbi.2004.05.004 (sciencedirect.com [abgerufen am 27. August 2023]).
  • Oliver Franklin-Wallis: From pandemics to cancer: the science power list. 27. August 2023, ISSN 0140-0460 (thetimes.co.uk [abgerufen am 27. August 2023]).