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Dive into the research topics where Douglas R. Higgs is active.

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Featured researches published by Douglas R. Higgs.


Methods and Protocols | 2018

Robust CRISPR/Cas9 Genome Editing of the HUDEP-2 Erythroid Precursor Line Using Plasmids and Single Stranded Oligonucleotide Donors

Gemma Moir-Meyer; Pak Leng Cheong; Aude-Anais Olijnik; Jill M. Brown; Samantha J. L. Knight; Andrew King; Ryo Kurita; Yukio Nakamura; Richard J. Gibbons; Douglas R. Higgs; Veronica J. Buckle; Christian Babbs

The study of cellular processes and gene regulation in terminal erythroid development has been greatly facilitated by the generation of an immortalised erythroid cell line derived from Human Umbilical Derived Erythroid Precursors, termed HUDEP-2 cells. The ability to efficiently genome edit HUDEP-2 cells and make clonal lines hugely expands their utility as the insertion of clinically relevant mutations allows study of potentially every genetic disease affecting red blood cell development. Additionally, insertion of sequences encoding short protein tags such as Strep, FLAG and Myc permits study of protein behaviour in the normal and disease state. This approach is useful to augment the analysis of patient cells as large cell numbers are obtainable with the additional benefit that the need for specific antibodies may be circumvented. This approach is likely to lead to insights into disease mechanisms and provide reagents to allow drug discovery. HUDEP-2 cells provide a favourable alternative to the existing immortalised erythroleukemia lines as their karyotype is much less abnormal. These cells also provide sufficient material for a broad range of analyses as it is possible to generate in vitro-differentiated erythroblasts in numbers 4–7 fold higher than starting cell numbers within 9–12 days of culture. Here we describe an efficient, robust and reproducible plasmid-based methodology to introduce short (<20 bp) DNA sequences into the genome of HUDEP-2 cells using the clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR associated protein 9 Cas9 system combined with single-stranded oligodeoxynucleotide (ssODN) donors. This protocol produces genetically modified lines in ~30 days and could also be used to generate knock-out and knock-in mutations.


Archive | 2009

Disorders of Hemoglobin

Martin H. Steinberg; B G Forget; Douglas R. Higgs; D. J. Weatherall


Blackwell Science | 2001

The Thalassaemia Syndromes

Swee Lay Thein; Douglas R. Higgs; D. J. Weatherall


Archive | 2016

blood-2016-01-694331-1

Andrew C. Perkins; Xiangmin Xu; Douglas R. Higgs; David J. Anstee; David M. Bodine; Joseph Borg; Merlin Crossley; Liu Dun; Alex E. Felice; Jan Frayne; Patrick G. Gallagher; Kevin R. Gillinder; Laura Grech; Joyce Lloyd; Paolo Moi; James C. K. Shen; Miroslawa Siatecka; Belinda K. Singleton; Michael R. Tallack; Tim M. Townes; Swee Lay Thein; Vip Viprakasit; George P. Patrinos; Lionel Arnaud; James J. Bieker; Sjaak Philipsen


Archive | 2015

for allograft rejection in peripheral blood samples Interference of globin genes with biomarker discovery

Rong Chen; Kang Liu; Michael Mindrinos; Ronald W. Davis; Minnie M. Sarwal; Li Li; Lihua Ying; Maarten Naesens; Wenzhong Xiao; Tara K. Sigdel; Sue Hsieh; Douglas R. Higgs; Veronica J. Buckle; Simon J. McGowan; Stephen Taylor; Asoke K. Nandi; William G. Wood; T. Merryweather-Clarke; Shamit Soneji; Nicki Gray; Kevin D. Clark


Archive | 2013

Bivalent Chromatin Modification

Marco De Gobbi; David Garrick; Magnus Lynch; Douglas Vernimmen; Jim R. Hughes; Nicolas Goardon; Sidinh Luc; Karen M. Lower; Jacqueline A. Sloane-Stanley; Cristina Pina; Shamit Soneji; Raffaele Renella; Tariq Enver; Stephen Taylor; Sten Eirik W. Jacobsen; Paresh Vyas; Richard J. Gibbons; Douglas R. Higgs


Archive | 2012

major human alpha globin regulatory element thalassemia clarifies the importance of the α A novel deletion causing

Douglas R. Higgs; Vip Viprakasit; Cornelis L. Harteveld; Helena Ayyub; Jackie S. Stanley; Piero C. Giordano


Archive | 2010

hematologic phenotype than germline ATRX mutations associated with {alpha} thalassemia (ATMDS) convey a more severe Acquired somatic ATRX mutations in myelodysplastic syndrome

David P. Steensma; Douglas R. Higgs; Christopher A. Fisher; Richard J. Gibbons


Archive | 2010

thalassemia in myelodysplastic syndrome (ATMDS) Deletion of the {alpha} globin gene cluster as a cause of acquired {alpha}

Douglas R. Higgs; David P. Steensma; Vip Viprakasit; Alex Hendrick; David K. Goff; Joanne Leach; Richard J. Gibbons


Archive | 2009

Disorders of Hemoglobin: Unusual Types of α Thalassemia

Douglas R. Higgs; Veronica J. Buckle; Richard J. Gibbons; David P. Steensma

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Richard J. Gibbons

Wellcome Trust Centre for Human Genetics

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Veronica J. Buckle

Los Alamos National Laboratory

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Asoke K. Nandi

Brunel University London

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