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How has Chia‐Ling Wu's publication output changed over time?
ScholarIQpublication output · 1991–2024
Output grew0% over the shown period — from 1 works in 1991 to 1 in 2024.
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1991199219932005201120122014201820212024
What are the most-cited papers on Chia‐Ling Wu?
ScholarIQmost cited works
A family of human cdc2‐related protein kinases.
Matthew Meyerson, G H Enders, Chia‐Ling Wu, Li Su, Claude Gorka, C. Nelson, Ed Harlow, Li‐Huei Tsai
S127916151. 1992921 CitationsOPEN ACCESS
Heterodimerization of the transcription factors E2F-1 and DP-1 leads to cooperative trans-activation.
Kristian Helin, Chia‐Ling Wu, Ali Fattaey, Jacqueline A. Lees, Brian David Dynlacht, Chidi Ngwu, E Harlow
S168778273. 1993508 CitationsOPEN ACCESS
Genome-wide identification of FoxO-dependent gene networks in skeletal muscle during C26 cancer cachexia
Sarah M. Judge, Chia‐Ling Wu, Adam W. Beharry, Brandon M. Roberts, Leonardo F. Ferreira, Susan C. Kandarian, Andrew R. Judge
BMC Cancer. 2014113 CitationsOPEN ACCESS
Identification of Genes that Elicit Disuse Muscle Atrophy via the Transcription Factors p50 and Bcl-3
Chia‐Ling Wu, Susan C. Kandarian, Robert W. Jackman
PLoS ONE. 201183 CitationsOPEN ACCESS
Deep learning to design nuclear-targeting abiotic miniproteins
Carly K. Schissel, Somesh Mohapatra, Justin M. Wolfe, Colin M. Fadzen, Kamela Bellovoda, Chia‐Ling Wu, Jenna Wood, Annika B. Malmberg, Andrei Loas, Rafael Gómez‐Bombarelli, Bradley L. Pentelute
S202193212. 202182 CitationsOPEN ACCESS
Related on ScholarIQ
Chang Gung University
Institution
A family of human cdc2‐related protein kinases.
Paper
Heterodimerization of the transcription factors E2F-1 and DP-1 leads to cooperative trans-activation.
Paper
Genome-wide identification of FoxO-dependent gene networks in skeletal muscle during C26 cancer cachexia
Paper
Identification of Genes that Elicit Disuse Muscle Atrophy via the Transcription Factors p50 and Bcl-3
Paper
Deep learning to design nuclear-targeting abiotic miniproteins
Paper