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24 publications found

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Group #1

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
RETRACTION - In Vitro Derivation of Human Sperm from Embryonic Stem Cells[1]Karim Nayernia, [2]Jae Ho Lee, [3]Majlinda Lako, [4]Lyle Armstrong, [5]Mary Herbert, [6]Manyu Li, [7]Wolfgang Engel, [8]David Elliott, [9]Miodrag Stojkovic, [10]John Parrington, [11]Alison Murdoch, [12]Tom Strachan, [13]Xin Zhang [Full author list]Stem Cells and Development [missing]DOI: 10.1089/SCD.2009.0063 [ORCID]
PubMed: 19583494 [ORCID]
2009-07-07
A role for NANOG in G1 to S transition in human embryonic stem cells through direct binding of CDK6 and CDC25A.[1]Xin Zhang, [2]Irina Neganova, [3]Stefan Przyborski, [4]Chunbo Yang, [5]Michael Cooke, [6]Stuart P Atkinson, [7]George Anyfantis, [8]Stefan Fenyk, [9]Nicol Keith, [10]Stacey F Hoare, [11]Owen Hughes, [12]Tom Strachan, [13]Miodrag Stojkovic, [14]Philip W Hinds, [15]Lyle Armstrong, [16]Majlinda Lako [Full author list]Journal of Cell Biology [missing]DOI: 10.1083/JCB.200801009 [ORCID]
PubMed: 19139263 [ORCID]
human embryonic stem cell [missing]2009-01-01
Silencing of the expression of pluripotent driven-reporter genes stably transfected into human pluripotent cells[1]Rebecca Stewart, [2]Chunbo Yang, [3]George Anyfantis, [4]Stefan Przyborski, [5]Nicholas Hole, [6]Tom Strachan, [7]Miodrag Stojkovic, [8]Nicol Keith, [9]Lyle Armstrong, [10]Majlinda Lako [Full author list]Regenerative Medicine [missing]DOI: 10.2217/17460751.3.4.505 [ORCID]
PubMed: 18588473 [ORCID]
pluripotency [missing]2008-07-01
Downregulation of NANOG induces differentiation of human embryonic stem cells to extraembryonic lineages[1]Louise Hyslop, [2]Miodrag Stojkovic, [3]Lyle Armstrong, [4]Theresia Walter, [5]Petra Stojkovic, [6]Stefan Przyborski, [7]Mary Herbert, [8]Alison Murdoch, [9]Tom Strachan, [10]Majlinda Lako [Full author list]Stem Cells [missing]DOI: 10.1634/STEMCELLS.2005-0080 [ORCID]
PubMed: 15983365 [ORCID]
human embryonic stem cell [missing]2005-06-27
An autogeneic feeder cell system that efficiently supports growth of undifferentiated human embryonic stem cells[1]Petra Stojkovic, [2]Majlinda Lako, [3]Rebecca Stewart, [4]Stefan Przyborski, [5]Lyle Armstrong, [6]Jerome Evans, [7]Alison Murdoch, [8]Tom Strachan, [9]Miodrag Stojkovic [Full author list]Stem Cells [missing]DOI: 10.1634/STEMCELLS.2004-0137 [ORCID]
PubMed: 15749925 [ORCID]
human embryonic stem cell [missing]2005-03-01
Derivation, growth and applications of human embryonic stem cells[1]Miodrag Stojkovic, [2]Majlinda Lako, [3]Tom Strachan, [4]Alison Murdoch [Full author list]Reproduction [missing]DOI: 10.1530/REP.1.00243 [ORCID]
PubMed: 15333777 [ORCID]
human embryonic stem cell [missing]2004-09-01
Derivation of human embryonic stem cells from day-8 blastocysts recovered after three-step in vitro culture[1]Miodrag Stojkovic, [2]Majlinda Lako, [3]Petra Stojkovic, [4]Rebecca Stewart, [5]Stefan Przyborski, [6]Lyle Armstrong, [7]Jerry Evans, [8]Mary Herbert, [9]Louise Hyslop, [10]Sajjad Ahmad, [11]Alison Murdoch, [12]Tom Strachan [Full author list]Stem Cells [missing]DOI: 10.1634/STEMCELLS.22-5-790 [ORCID]
PubMed: 15342943 [ORCID]
human embryonic stem cell [missing]2004-01-01

Group #2

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
3D modelling, gene expression mapping and post-mapping image analysis in the developing human brain[1]Subrot Sarma, [2]Janet Kerwin, [3]Luis Puelles, [4]Mark Scott, [5]Tom Strachan, [6]Guangjie Feng, [7]James Sharpe, [8]Duncan Davidson, [9]Richard A. Baldock, [10]Susan Lindsay [Full author list]Brain Research Bulletin [missing]DOI: 10.1016/J.BRAINRESBULL.2005.05.022 [ORCID]
PubMed: 16144630 [ORCID]
image analysis [missing]2005-09-01
3 dimensional modelling of early human brain development using optical projection tomography[1]Janet Kerwin, [2]Mark Scott, [3]James Sharpe, [4]Luis Puelles, [5]Stephen C Robson, [6]Margaret Martínez-de-la-Torre, [7]José Luis Ferran, [8]Guangjie Feng, [9]Richard A. Baldock, [10]Tom Strachan, [11]Duncan Davidson, [12]Susan Lindsay [Full author list]BMC Neuroscience [missing]DOI: 10.1186/1471-2202-5-27 [ORCID]
PubMed: 15298700 [ORCID]
brain [missing]2004-08-06
A giant novel gene undergoing extensive alternative splicing is severed by a Cornelia de Lange-associated translocation breakpoint at 3q26.3.[1]E Tonkin, [2]Melanie Smith, [3]Pieter J Eichhorn, [4]Sandie Jones, [5]Burhan Imamwerdi, [6]Susan Lindsay, [7]Mike Jackson, [8]Tzu-Jou Wang, [9]Maggie Ireland, [10]John Burn, [11]Ian D Krantz, [12]Philippa Carr, [13]Tom Strachan [Full author list]Human Genetics [missing]DOI: 10.1007/S00439-004-1134-6 [ORCID]
PubMed: 15168106 [ORCID]
alternative mRNA splicing, via spliceosome [missing]2004-05-27
NIPBL, encoding a homolog of fungal Scc2-type sister chromatid cohesion proteins and fly Nipped-B, is mutated in Cornelia de Lange syndrome[1]E Tonkin, [2]Tzu-Jou Wang, [3]Steven Lisgo, [4]Michael J Bamshad, [5]Tom Strachan [Full author list]Nature Genetics [missing]DOI: 10.1038/NG1363 [ORCID]
PubMed: 15146185 [ORCID]
Cornelia de Lange syndrome [missing]; NIPBL cohesin loading factor [missing]; metanephros development [missing]2004-05-16
Craniofacial expression of human and murine TBX22 correlates with the cleft palate and ankyloglossia phenotype observed in CPX patients[1]Claire Braybrook, [2]Steven Lisgo, [3]Kit Doudney, [4]Deborah Henderson, [5]Ana Carolina B Marçano, [6]Tom Strachan, [7]Michael A Patton, [8]Laurent Villard, [9]Gudrun E Moore, [10]Philip Stanier, [11]Susan Lindsay [Full author list]Human Molecular Genetics [missing]DOI: 10.1093/HMG/11.22.2793 [ORCID]
PubMed: 12374769 [ORCID]
phenotype [missing]; patient [missing]; cleft palate [missing]2002-10-01
Identification and characterisation of novel mammalian homologues of Drosophila polyhomeoticpermits new insights into relationships between members of the polyhomeotic family[1]E Tonkin, [2]Donna-Marie Hagan, [3]Weiping Li, [4]Tom Strachan [Full author list]Human Genetics [missing]DOI: 10.1007/S00439-002-0814-3 [ORCID]
PubMed: 12384788 [ORCID]
Drosophila [missing]2002-08-21

Group #3

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
A perspective on inversin[1]Lorraine Eley, [2]Lee Turnpenny, [3]Laura M Yates, [4]A Scott Craighead, [5]David Morgan, [6]Catherine Whistler, [7]Judith A Goodship, [8]Tom Strachan [Full author list]Cell Biology International [missing]DOI: 10.1016/J.CELLBI.2003.11.009 [ORCID]
PubMed: 14984757 [ORCID]
2004-01-01
Mutations in INVS encoding inversin cause nephronophthisis type 2, linking renal cystic disease to the function of primary cilia and left-right axis determination[1]Edgar A. Otto, [2]Bernhard Schermer, [3]Tomoko Obara, [4]John F O'Toole, [5]Karl S Hiller, [6]Adelheid M Mueller, [7]Rainer G Ruf, [8]Julia Hoefele, [9]Frank Beekmann, [10]Daniel Landau, [11]John W Foreman, [12]Judith A Goodship, [13]Tom Strachan, [14]Andreas Kispert, [15]Matthias T Wolf, ... [Full author list]Nature Genetics [missing]DOI: 10.1038/NG1217 [ORCID]
PubMed: 12872123 [ORCID]
Inversin [missing]2003-08-01
Expression analyses and interaction with the anaphase promoting complex protein Apc2 suggest a role for inversin in primary cilia and involvement in the cell cycle[1]David Morgan, [2]Lorraine Eley, [3]John A. Sayer, [4]Tom Strachan, [5]Laura M Yates, [6]A Scott Craighead, [7]Judith A Goodship [Full author list]Human Molecular Genetics [missing]DOI: 10.1093/HMG/11.26.3345 [ORCID]
PubMed: 12471060 [ORCID]
2002-12-01
The left-right determinant inversin has highly conserved ankyrin repeat and IQ domains and interacts with calmodulin[1]David Morgan, [2]Judith A Goodship, [3]Jeffrey J Essner, [4]Kyle Vogan, [5]Lee Turnpenny, [6]H Joseph Yost, [7]Clifford Tabin, [8]Tom Strachan [Full author list]Human Genetics [missing]DOI: 10.1007/S00439-002-0696-4 [ORCID]
PubMed: 11941489 [ORCID]
2002-03-02

Misc

TitleAuthors (identified)Published InIdentifier(s)TopicPublished DateMatch?
Neural crest cell-specific inactivation of Nipbl or Mau2 during mouse development results in a late onset of craniofacial defects.[1]Terence Gordon Smith, [2]Steve Laval, [3]Fangli Chen, [4]Matthew James Rock, [5]Tom Strachan, [6]Heiko Peters [Full author list]Genesis [missing]DOI: 10.1002/DVG.22780 [ORCID]
PubMed: 24700590 [ORCID]
2014-04-21
Metazoan Scc4 homologs link sister chromatid cohesion to cell and axon migration guidance[1]Vlad C Seitan, [2]Peter Banks, [3]Steve Laval, [4]Nazia A Majid, [5]Dale Dorsett, [6]Amer Rana, [7]James Cuthbert Smith, [8]Alex Bateman, [9]Sanja Krpic, [10]Arnd Hostert, [11]Robert A Rollins, [12]Hediye Erdjument-Bromage, [13]Paul Tempst, [14]Claire Y Benard, [15]Siegfried Hekimi, [16]Sarah F Newbury, [17]Tom Strachan [Full author list]PLOS Biology [missing]DOI: 10.1371/JOURNAL.PBIO.0040242 [ORCID]
PubMed: 16802858 [ORCID]
cell migration [missing]; NIPBL cohesin loading factor [missing]; protein N-terminus binding [missing]; MAU2 sister chromatid cohesion factor [missing]; Nipped-B-like protein scc-2 CELE_Y43H11AL.3 [missing]; Nipped-B Dmel_CG17704 [missing]; Mau2 sister chromatid cohesion factor Dmel_CG4203 [missing]2006-07-01
Cornelia de Lange Syndrome and the link between chromosomal function, DNA repair and developmental gene regulation[1]Tom Strachan [Full author list]Current Opinion in Genetics & Development [missing]DOI: 10.1016/J.GDE.2005.04.005 [ORCID]
PubMed: 15917200 [ORCID]
Cornelia de Lange syndrome [missing]; MRE11 homolog, double strand break repair nuclease [missing]; sister chromatid cohesion [missing]; Structural maintenance of chromosomes 1A [missing]; F-box and WD repeat domain containing 7 [missing]; Structural maintenance of chromosomes 3 [missing]; Stromal antigen 2 [missing]2005-06-01
Towards effective and rewarding data sharing[1]Daniel Gardner, [2]Arthur W. Toga, [3]Giorgio A. Ascoli, [4]Jackson T Beatty, [5]James F. Brinkley, [6]Anders M. Dale, [7]Peter T. Fox, [8]Esther P Gardner, [9]John S George, [10]Nigel Goddard, ..., [27]Neil R. Smalheiser, [28]Kenneth P Smith, [29]Tom Strachan, [30]David C. Van Essen, [31]Robert W. Williams, ... [Full author list]Neuroinformatics [missing]DOI: 10.1385/NI:1:3:289 [ORCID]
PubMed: 15046250 [ORCID]
data sharing [missing]2003-01-01
Breakpoint position on 17q identifies the most aggressive neuroblastoma tumors[1]Maria Lastowska, [2]Simon Cotterill, [3]Nick Bown, [4]Catherine Cullinane, [5]Sadick Variend, [6]John Lunec, [7]Tom Strachan, [8]Andrew D J Pearson, [9]Michael S Jackson [Full author list]Genes, Chromosomes and Cancer [missing]DOI: 10.1002/GCC.10089 [ORCID]
PubMed: 12112532 [ORCID]
neuroblastoma [missing]2002-08-01
Hailey-Hailey disease: molecular and clinical characterization of novel mutations in the ATP2C1 gene[1]Carol Dobson-Stone, [2]Rebecca Fairclough, [3]Eimear Dunne, [4]Joanna Brown, [5]Manel Dissanayake, [6]Colin S Munro, [7]Tom Strachan, [8]Susan Burge, [9]Ralf Sudbrak, [10]Anthony Monaco, [11]Alain Hovnanian [Full author list]Journal of Investigative Dermatology [missing]DOI: 10.1046/J.0022-202X.2001.01675.X [ORCID]
PubMed: 11841554 [ORCID]
Hailey-Hailey disease [missing]2002-02-01
Genetic and Physical Mapping at the Limb-Girdle Muscular Dystrophy Locus (LGMD2B) on Chromosome 2p[1]Rumaisa Bashir, [2]Sharon Keers, [3]Tom Strachan, [4]Rita Passos-Bueno, [5]Mayana Zatz, [6]Jean Weissenbach, [7]Denis Le Paslier, [8]Miriam Meisler, [9]Kate Bushby [Full author list]Genomics [missing]DOI: 10.1006/GENO.1996.0157 [ORCID]
PubMed: 8617508 [ORCID]
limb-girdle muscular dystrophy [missing]1996-04-01

Potential author items

NameDescriptionAuthored itemsIdentifiersEmployer(s)
Tom StrachanAustralian businessman0
T. StrachanBritský profesor molekulární genetiky, specializuje se na vývojovou a buněčnou genetiku. Publikace v oboru.0ISNI: 0000000108898343
VIAF ID: 39455443
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