Publication:
Development of gene editing strategies for human beta-globin (HBB) gene mutations

dc.contributor.coauthorYüce, Melek
dc.contributor.coauthorAlpaslan, Medine Karadağ
dc.contributor.coauthorKocabaş, Fatih
dc.contributor.kuauthorKalkan, Batuhan Mert
dc.contributor.kuauthorKala, Ezgi Yağmur
dc.contributor.kuprofilePhD Student
dc.contributor.kuprofileFaculty Member
dc.contributor.schoolcollegeinstituteGraduate School of Health Sciences
dc.date.accessioned2024-11-09T13:07:11Z
dc.date.issued2020
dc.description.abstractRecent developments in gene editing technology have enabled scientists to modify DNA sequence by using engineered endonucleases. These gene editing tools are promising candidates for clinical applications, especially for treatment of inherited disorders like sickle cell disease (SCD). SCD is caused by a point mutation in human beta-globin gene (HBB). Clinical strategies have demonstrated substantial success, however there is not any permanent cure for SCD available. CRISPR/Cas9 platform uses a single endonuclease and a single guide RNA (gRNA) to induce sequence-specific DNA double strand break (DSB). When this accompanies a repair template, it allows repairing the mutated gene. In this study, it was aimed to target HBB gene via CRISPR/Cas9 genome editing tool to introduce nucleotide alterations for efficient genome editing and correction of point mutations causing SCD in human cell line, by Homology Directed Repair (HDR). We have achieved to induce target specific nucleotide changes on HBB gene in the locus of mutation causing SCD. The effect of on-target activity of bone fide standard gRNA and newly developed longer gRNA were examined. It is observed that longer gRNA has higher affinity to target DNA while having the same performance for targeting and Cas9 induced DSBs. HDR mechanism was triggered by co-delivery of donor DNA repair templates in circular plasmid form. In conclusion, we have suggested methodological pipeline for efficient targeting with higher affinity to target DNA and generating desired modifications on HBB gene.
dc.description.fulltextYES
dc.description.indexedbyWoS
dc.description.indexedbyScopus
dc.description.indexedbyPubMed
dc.description.openaccessYES
dc.description.publisherscopeInternational
dc.description.sponsoredbyTubitakEuTÜBİTAK
dc.description.sponsoredbyTubitakEuEU
dc.description.sponsorshipEuropean Union (EU)
dc.description.sponsorshipHorizon 2020
dc.description.sponsorshipThe Marie Curie Action COFUND of the 7th Framework Programme (FP7) of the European Commission
dc.description.sponsorshipScientific and Technological Research Council of Turkey (TÜBİTAK)
dc.description.sponsorshipTurkish Hematology Association, 2016 Research Project
dc.description.sponsorshipInternational Centre for Genetic Engineering and Biotechnology Early Career Return Grant
dc.description.sponsorshipScience Academy Young Scientists Award, 2015 BAGEP Program
dc.description.sponsorshipMMV Pathogenbox Award
dc.description.versionAuthor's final manuscript
dc.description.volume734
dc.formatpdf
dc.identifier.doi10.1016/j.gene.2020.144398
dc.identifier.eissn1879-0038
dc.identifier.embargoNO
dc.identifier.filenameinventorynoIR02734
dc.identifier.issn0378-1119
dc.identifier.linkhttps://doi.org/10.1016/j.gene.2020.144398
dc.identifier.quartileQ2
dc.identifier.scopus2-s2.0-85078743686
dc.identifier.urihttps://hdl.handle.net/20.500.14288/2563
dc.identifier.wos517657000007
dc.keywordsSickle cell disease
dc.keywordsThalassemia
dc.keywordsAnemia
dc.keywordsGene editing
dc.keywordsCRIPSR/Cas9
dc.languageEnglish
dc.publisherElsevier
dc.relation.grantno115C039
dc.relation.grantno15S185, 215Z069, 216S317, 215Z071
dc.relation.grantnoCRP/TUR15-02EC
dc.relation.urihttp://cdm21054.contentdm.oclc.org/cdm/ref/collection/IR/id/9380
dc.sourceGene
dc.subjectGenetics and heredity
dc.titleDevelopment of gene editing strategies for human beta-globin (HBB) gene mutations
dc.typeJournal Article
dspace.entity.typePublication
local.contributor.kuauthorKalkan, Batuhan Mert
local.contributor.kuauthorKala, Ezgi Yağmur

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