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Journal of Molecular Biology|October 15, 2020
Structural Analysis of Different LINC Complexes Reveals Distinct Binding ModesVictor E Cruz, F Esra Demircioglu, Thomas U SchwartzMethods in Enzymology|January 19, 2016
Purification and Structural Analysis of SUN and KASH Domain ProteinsF Esra Demircioglu, Victor E Cruz, Thomas U SchwartzNature Communications|November 28, 2020
Yeast Nup84-Nup133 complex structure details flexibility and reveals conservation of the membrane anchoring ALPS motifSarah A Nordeen, Daniel L Turman, Thomas U SchwartzStructure (London, England : 1993)|July 7, 2009
The structure of the scaffold nucleoporin Nup120 reveals a new and unexpected domain architectureNina C Leksa, Stephen G Brohawn, Thomas U SchwartzMolecular Cell|June 24, 2008
Structural and functional studies of Nup107/Nup133 interaction and its implications for the architecture of the nuclear pore complexThomas Boehmer, Sandra Jeudy, Ian C Berke, et al.Geburtshilfe Und Frauenheilkunde|June 1, 1986
[Hyperthecosis ovarii--a tumor-like change in androgenized females]U Schwartz, L Moltz, H Pickartz, et al.Nature Structural & Molecular Biology|March 31, 2015
Atomic structure of the Y complex of the nuclear poreKotaro Kelley, Kevin E Knockenhauer, Greg Kabachinski, et al.Cell|May 29, 2012
LINC complexes form by binding of three KASH peptides to domain interfaces of trimeric SUN proteinsBrian A Sosa, Andrea Rothballer, Ulrike Kutay, et al.The Journal of Cell Biology|November 24, 2004
Structural and functional analysis of Nup133 domains reveals modular building blocks of the nuclear pore complexIan C Berke, Thomas Boehmer, Günter Blobel, et al.Proceedings of the National Academy of Sciences of the United States of America|April 22, 2006
Homodimerization of the G protein SRbeta in the nucleotide-free state involves proline cis/trans isomerization in the switch II regionThomas U Schwartz, Daniel Schmidt, Stephen G Brohawn, et al.Pageof 14