L. Stirling Churchman
L. Stirling Churchman
Associate Professor of Genetics, Harvard Medical School
Adresă de e-mail confirmată pe genetics.med.harvard.edu - Pagina de pornire
Citat de
Citat de
Optimized localization analysis for single-molecule tracking and super-resolution microscopy
KI Mortensen, LS Churchman, JA Spudich, H Flyvbjerg
Nature methods 7 (5), 377-381, 2010
Nascent transcript sequencing visualizes transcription at nucleotide resolution
LS Churchman, JS Weissman
Nature 469 (7330), 368-373, 2011
Single mammalian cells compensate for differences in cellular volume and DNA copy number through independent global transcriptional mechanisms
O Padovan-Merhar, GP Nair, AG Biaesch, A Mayer, S Scarfone, SW Foley, ...
Molecular cell 58 (2), 339-352, 2015
Single molecule high-resolution colocalization of Cy3 and Cy5 attached to macromolecules measures intramolecular distances through time
LS Churchman, Z Ökten, RS Rock, JF Dawson, JA Spudich
Proceedings of the National Academy of Sciences 102 (5), 1419-1423, 2005
The code and beyond: transcription regulation by the RNA polymerase II carboxy-terminal domain
KM Harlen, LS Churchman
Nature reviews Molecular cell biology 18 (4), 263-273, 2017
BET bromodomain proteins function as master transcription elongation factors independent of CDK9 recruitment
GE Winter, A Mayer, DL Buckley, MA Erb, JE Roderick, S Vittori, JM Reyes, ...
Molecular cell 67 (1), 5-18. e19, 2017
Native elongating transcript sequencing reveals human transcriptional activity at nucleotide resolution
A Mayer, J Di Iulio, S Maleri, U Eser, J Vierstra, A Reynolds, R Sandstrom, ...
Cell 161 (3), 541-554, 2015
Synchronized mitochondrial and cytosolic translation programs
MT Couvillion, IC Soto, G Shipkovenska, LS Churchman
Nature 533 (7604), 499-503, 2016
Splicing kinetics and coordination revealed by direct nascent RNA sequencing through nanopores
HL Drexler, K Choquet, LS Churchman
Molecular cell 77 (5), 985-998. e8, 2020
Myosin VI walks hand-over-hand along actin
Z Ökten, LS Churchman, RS Rock, JA Spudich
Nature structural & molecular biology 11 (9), 884-887, 2004
Comprehensive RNA polymerase II interactomes reveal distinct and varied roles for each phospho-CTD residue
KM Harlen, KL Trotta, EE Smith, MM Mosaheb, SM Fuchs, LS Churchman
Cell reports 15 (10), 2147-2158, 2016
Rapid creation and quantitative monitoring of high coverage shRNA libraries
MC Bassik, RJ Lebbink, LS Churchman, NT Ingolia, W Patena, ...
Nature methods 6 (6), 443-445, 2009
Pause & go: from the discovery of RNA polymerase pausing to its functional implications
A Mayer, HM Landry, LS Churchman
Current opinion in cell biology 46, 72-80, 2017
A chromatin-based mechanism for limiting divergent noncoding transcription
S Marquardt, R Escalante-Chong, N Pho, J Wang, LS Churchman, ...
Cell 157 (7), 1712-1723, 2014
Native elongating transcript sequencing (NET‐seq)
LS Churchman, JS Weissman
Current protocols in molecular biology 98 (1), 14.4. 1-14.4. 17, 2012
A non-Gaussian distribution quantifies distances measured with fluorescence localization techniques
LS Churchman, H Flyvbjerg, JA Spudich
Biophysical journal 90 (2), 668-671, 2006
Proteotoxicity from aberrant ribosome biogenesis compromises cell fitness
BW Tye, N Commins, LV Ryazanova, M Wühr, M Springer, D Pincus, ...
elife 8, e43002, 2019
H3K4 trimethylation by Set1 promotes efficient termination by the Nrd1-Nab3-Sen1 pathway
N Terzi, LS Churchman, L Vasiljeva, J Weissman, S Buratowski
Molecular and cellular biology 31 (17), 3569-3583, 2011
Single-molecule regulatory architectures captured by chromatin fiber sequencing
AB Stergachis, BM Debo, E Haugen, LS Churchman, ...
Science 368 (6498), 1449-1454, 2020
The ground state and evolution of promoter region directionality
Y Jin, U Eser, K Struhl, LS Churchman
Cell 170 (5), 889-898. e10, 2017
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