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Nature|June 11, 2004
Metabolic network analysis of the causes and evolution of enzyme dispensability in yeastBalázs Papp, Csaba Pál, Laurence D HurstJournal of Molecular Evolution|April 17, 2002
Clustering of tissue-specific genes underlies much of the similarity in rates of protein evolution of linked genesElizabeth J B Williams, Laurence D HurstTrends in Genetics : TIG|August 7, 2003
Evolution of cis-regulatory elements in duplicated genes of yeastBalázs Papp, Csaba Pál, Laurence D HurstPlos Biology|May 26, 2017
Teaching genetics prior to teaching evolution improves evolution understanding but not acceptanceRebecca Mead, Momna Hejmadi, Laurence D HurstGenome Biology|February 9, 2008
Finding exonic islands in a sea of non-coding sequence: splicing related constraints on protein composition and evolution are common in intron-rich genomesTobias Warnecke, Joanna L Parmley, Laurence D HurstMolecular Biology and Evolution|November 11, 2017
Faster Evolving Primate Genes Are More Likely to DuplicateÁine N O'Toole, Laurence D Hurst, Aoife McLysaghtPlos Computational Biology|July 15, 2006
Evolutionary and physiological importance of hub proteinsNizar N Batada, Laurence D Hurst, Mike TyersBiochemical Society Transactions|July 21, 2009
Why there is more to protein evolution than protein function: splicing, nucleosomes and dual-coding sequenceTobias Warnecke, Claudia C Weber, Laurence D HurstPlos Genetics|November 8, 2008
The impact of the nucleosome code on protein-coding sequence evolution in yeastTobias Warnecke, Nizar N Batada, Laurence D HurstGenome Research|February 5, 2003
Coexpression of neighboring genes in Caenorhabditis elegans is mostly due to operons and duplicate genesMartin J Lercher, Thomas Blumenthal, Laurence D HurstPageof 18