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Cell Motility and the Cytoskeleton|March 3, 2009
The evolution of the cilium and the eukaryotic cellHyman Hartman, Temple F SmithFEBS Letters|October 17, 2015
The evolution of Class II Aminoacyl-tRNA synthetases and the first codeTemple F Smith, Hyman HartmanLife (Basel, Switzerland)|August 25, 2019
Origin of the Genetic Code Is Found at the Transition between a Thioester World of Peptides and the Phosphoester World of PolynucleotidesHyman Hartman, Temple F SmithLife (Basel, Switzerland)|November 6, 2014
The evolution of the ribosome and the genetic codeHyman Hartman, Temple F SmithArchaea (Vancouver, B.C.)|August 1, 2006
The archaeal origins of the eukaryotic translational systemHyman Hartman, Paola Favaretto, Temple F SmithProtein Engineering|February 26, 2004
A search method for homologs of small proteins. Ubiquitin-like proteins in prokaryotic cells?Jadwiga R Bienkowska, Hyman Hartman, Temple F SmithCell|March 7, 2017
Remnants of an Ancient Metabolism without PhosphateJoshua E Goldford, Hyman Hartman, Temple F Smith, et al.Biology Direct|April 24, 2008
The origin and evolution of the ribosomeTemple F Smith, Jung C Lee, Robin R Gutell, et al.Molecular Phylogenetics and Evolution|November 4, 2004
Ribosomal protein-sequence block structure suggests complex prokaryotic evolution with implications for the origin of eukaryotesPrashanth Vishwanath, Paola Favaretto, Hyman Hartman, et al.Pageof 4