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Nucleic Acids Research|March 23, 2023
On the dependent recognition of some long zinc finger proteinsZheng Zuo, Timothy Billings, Michael Walker, et al.Nucleic Acids Research|April 22, 2011
A modified bacterial one-hybrid system yields improved quantitative models of transcription factor specificityRyan G Christensen, Ankit Gupta, Zheng Zuo, et al.Genome Biology|February 23, 2008
Computational identification of the normal and perturbed genetic networks involved in myeloid differentiation and acute promyelocytic leukemiaLi Wei Chang, Jacqueline E Payton, Wenlin Yuan, et al.Communications Biology|December 14, 2020
Autoregulation of yeast ribosomal proteins discovered by efficient search for feedback regulationBasab Roy, David Granas, Fredrick Bragg, et al.BMC Bioinformatics|March 9, 2006
An improved map of conserved regulatory sites for Saccharomyces cerevisiaeKenzie D MacIsaac, Ting Wang, D Benjamin Gordon, et al.Nature Methods|May 1, 2012
An optimized two-finger archive for ZFN-mediated gene targetingAnkit Gupta, Ryan G Christensen, Amy L Rayla, et al.G3 (Bethesda, Md.)|April 23, 2013
Identification of cilia genes that affect cell-cycle progression using whole-genome transcriptome analysis in Chlamydomonas reinhardttiAlison J Albee, Alan L Kwan, Huawen Lin, et al.Nucleic Acids Research|June 28, 2005
enoLOGOS: a versatile web tool for energy normalized sequence logosChristopher T Workman, Yutong Yin, David L Corcoran, et al.Cell|July 1, 2008
Analysis of homeodomain specificities allows the family-wide prediction of preferred recognition sitesMarcus B Noyes, Ryan G Christensen, Atsuya Wakabayashi, et al.Bioinformatics (Oxford, England)|June 13, 2012
Recognition models to predict DNA-binding specificities of homeodomain proteinsRyan G Christensen, Metewo Selase Enuameh, Marcus B Noyes, et al.Pageof 62