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Peter A Meyer

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Articles 11
Citations 263
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Recent Articles
1.
Herre C, Ho A, Eisenbraun B, Vincent J, Nicholson T, Boutsioukis G, et al.
Acta Crystallogr D Struct Biol . 2024 Jun; 80(Pt 6):439-450. PMID: 38832828
The expansive scientific software ecosystem, characterized by millions of titles across various platforms and formats, poses significant challenges in maintaining reproducibility and provenance in scientific research. The diversity of independently...
2.
Riise J, Meyer S, Blaas I, Chopra A, Tran T, Delic-Sarac M, et al.
Br J Haematol . 2022 Mar; 197(6):697-708. PMID: 35254660
B-cell depletion induced by anti-cluster of differentiation 20 (CD20) monoclonal antibody (mAb) therapy of patients with lymphoma is expected to impair humoral responses to severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2)...
3.
Seegar T, Killingsworth L, Saha N, Meyer P, Patra D, Zimmerman B, et al.
Cell . 2017 Dec; 171(7):1638-1648.e7. PMID: 29224781
Cleavage of membrane-anchored proteins by ADAM (a disintegrin and metalloproteinase) endopeptidases plays a key role in a wide variety of biological signal transduction and protein turnover processes. Among ADAM family...
4.
McKinney B, Meyer P, Crosas M, Sliz P
Ann N Y Acad Sci . 2016 Nov; 1387(1):95-104. PMID: 27862010
Access to experimental X-ray diffraction image data is important for validation and reproduction of macromolecular models and indispensable for the development of structural biology processing methods. In response to the...
5.
Meyer P, Socias S, Key J, Ransey E, Tjon E, Buschiazzo A, et al.
Nat Commun . 2016 Mar; 7:10882. PMID: 26947396
Access to experimental X-ray diffraction image data is fundamental for validation and reproduction of macromolecular models and indispensable for development of structural biology processing methods. Here, we established a diffraction...
6.
Meyer P, Li S, Zhang M, Yamada K, Takagi Y, Hartzog G, et al.
Mol Cell Biol . 2015 Jul; 35(19):3354-69. PMID: 26217010
The eukaryotic Spt4-Spt5 heterodimer forms a higher-order complex with RNA polymerase II (and I) to regulate transcription elongation. Extensive genetic and functional data have revealed diverse roles of Spt4-Spt5 in...
7.
Johnsen S, Brun J, Goransson L, Smastuen M, Johannesen T, Haldorsen K, et al.
Arthritis Care Res (Hoboken) . 2012 Nov; 65(5):816-21. PMID: 23139233
Objective: Primary Sjögren's syndrome (SS) is associated with an increased risk of non-Hodgkin's lymphoma (NHL), but the reported prevalence and risk vary considerably. The objective of this study was to...
8.
Meyer P, Fu J
Structure . 2012 May; 20(5):755-7. PMID: 22579244
How does a common RNA polymerase II apparatus generate a complex pattern of transcripts in response to many gene-specific transcription factors and in accordance with cell's state? In this issue...
9.
Suh M, Meyer P, Gu M, Ye P, Zhang M, Kaplan C, et al.
J Biol Chem . 2010 Aug; 285(44):34027-38. PMID: 20720002
RNA capping enzyme (CE) is recruited specifically to RNA polymerase II (Pol II) transcription sites to facilitate cotranscriptional 5'-capping of pre-mRNA and other Pol II transcripts. The current model to...
10.
Meyer P, Ye P, Suh M, Zhang M, Fu J
J Biol Chem . 2009 Mar; 284(19):12933-9. PMID: 19289466
RNA polymerase II (Pol II) is the central enzyme of eukaryotic gene expression machinery. Complete definition of the three-dimensional structure of Pol II is essential for understanding the mechanisms that...