In Situ Genetic Correction of the Sickle Cell Anemia Mutation in Human Induced Pluripotent Stem Cells Using Engineered Zinc Finger Nucleases

被引:231
作者
Sebastiano, Vittorio [1 ,2 ]
Maeder, Morgan L. [4 ,5 ,6 ]
Angstman, James F. [4 ,5 ]
Haddad, Bahareh [1 ]
Khayter, Cyd [4 ,5 ]
Yeo, Dana T. [1 ]
Goodwin, Mathew J. [4 ,5 ]
Hawkins, John S. [1 ]
Ramirez, Cherie L. [4 ,5 ,6 ]
Batista, Luis F. Z. [3 ]
Artandi, Steven E. [3 ]
Wernig, Marius [1 ]
Joung, J. Keith [4 ,5 ,6 ,7 ]
机构
[1] Stanford Univ, Dept Pathol, Sch Med, Inst Stem Cell Biol & Regenerat Med, Stanford, CA 94305 USA
[2] Stanford Univ, Dept Obstet & Gynecol, Sch Med, Stanford, CA 94305 USA
[3] Stanford Univ, Dept Med, Sch Med, Stanford, CA 94305 USA
[4] Massachusetts Gen Hosp, Mol Pathol Unit, Ctr Canc Res, Charlestown, MA USA
[5] Massachusetts Gen Hosp, Ctr Computat & Integrat Biol, Charlestown, MA USA
[6] Harvard Univ, Sch Med, Biol & Biomed Sci Program, Boston, MA USA
[7] Harvard Univ, Sch Med, Dept Pathol, Boston, MA 02115 USA
基金
美国国家科学基金会;
关键词
Induced pluripotency; Gene therapy; Gene targeting; Anemia; Zinc finger nucleases; HOMOLOGOUS RECOMBINATION; HUMAN ESCS; GENERATION; DISEASE; PATIENT; CONSTRUCTION; INDUCTION; SELECTION; VECTOR; LOCUS;
D O I
10.1002/stem.718
中图分类号
Q813 [细胞工程];
学科分类号
摘要
The combination of induced pluripotent stem cell (iPSC) technology and targeted gene modification by homologous recombination (HR) represents a promising new approach to generate genetically corrected, patient-derived cells that could be used for autologous transplantation therapies. This strategy has several potential advantages over conventional gene therapy including eliminating the need for immunosuppression, avoiding the risk of insertional mutagenesis by therapeutic vectors, and maintaining expression of the corrected gene by endogenous control elements rather than a constitutive promoter. However, gene targeting in human pluripotent cells has remained challenging and inefficient. Recently, engineered zinc finger nucleases (ZFNs) have been shown to substantially increase HR frequencies in human iPSCs, raising the prospect of using this technology to correct disease causing mutations. Here, we describe the generation of iPSC lines from sickle cell anemia patients and in situ correction of the disease causing mutation using three ZFN pairs made by the publicly available oligomerized pool engineering method (OPEN). Gene-corrected cells retained full pluripotency and a normal karyotype following removal of reprogramming factor and drug-resistance genes. By testing various conditions, we also demonstrated that HR events in human iPSCs can occur as far as 82 bps from a ZFN-induced break. Our approach delineates a roadmap for using ZFNs made by an open-source method to achieve efficient, transgene-free correction of monogenic disease mutations in patient-derived iPSCs. Our results provide an important proof of principle that ZFNs can be used to produce gene-corrected human iPSCs that could be used for therapeutic applications. STEM CELLS 2011;29:1717-1726
引用
收藏
页码:1717 / 1726
页数:10
相关论文
共 49 条
[1]   Human zinc fingers as building blocks in the construction of artificial transcription factors [J].
Bae, KH ;
Do Kwon, Y ;
Shin, HC ;
Hwang, MS ;
Ryu, EH ;
Park, KS ;
Yang, HY ;
Lee, D ;
Lee, Y ;
Park, J ;
Kwon, HS ;
Kim, HW ;
Yeh, BI ;
Lee, HW ;
Sohn, SH ;
Yoon, J ;
Seol, W ;
Kim, JS .
NATURE BIOTECHNOLOGY, 2003, 21 (03) :275-280
[2]   Design, construction and in vitro testing of zinc finger nucleases [J].
Carroll, Dana ;
Morton, J. Jason ;
Beumer, Kelly J. ;
Segal, David J. .
NATURE PROTOCOLS, 2006, 1 (03) :1329-1341
[3]   Zinc-Finger Nucleases: A Panoramic View [J].
Carroll, Dana .
CURRENT GENE THERAPY, 2011, 11 (01) :2-10
[4]   Functional genomics, proteomics, and regulatory DNA analysis in isogenic settings using zinc finger nuclease-driven transgenesis into a safe harbor locus in the human genome [J].
DeKelver, Russell C. ;
Choi, Vivian M. ;
Moehle, Erica A. ;
Paschon, David E. ;
Hockemeyer, Dirk ;
Meijsing, Sebastiaan H. ;
Sancak, Yasemin ;
Cui, Xiaoxia ;
Steine, Eve Line J. ;
Miller, Jeffrey C. ;
Tam, Phillip ;
Bartsevich, Victor V. ;
Meng, Xiangdong ;
Rupniewski, Igor ;
Gopalan, Sunita M. ;
Sun, Helena C. ;
Pitz, Kathleen J. ;
Rock, Jeremy M. ;
Zhang, Lei ;
Davis, Gregory D. ;
Rebar, Edward J. ;
Cheeseman, Iain M. ;
Yamamoto, Keith R. ;
Sabatini, David M. ;
Jaenisch, Rudolf ;
Gregory, Philip D. ;
Urnov, Fyodor D. .
GENOME RESEARCH, 2010, 20 (08) :1133-1142
[5]   Analysis of gene targeting and intrachromosomal homologous recombination stimulated by genomic double-strand breaks in mouse embryonic stem cells [J].
Donoho, G ;
Jasin, M ;
Berg, P .
MOLECULAR AND CELLULAR BIOLOGY, 1998, 18 (07) :4070-4078
[6]   Heritable targeted gene disruption in zebrafish using designed zinc-finger nucleases [J].
Doyon, Yannick ;
McCammon, Jasmine M. ;
Miller, Jeffrey C. ;
Faraji, Farhoud ;
Ngo, Catherine ;
Katibah, George E. ;
Amora, Rainier ;
Hocking, Toby D. ;
Zhang, Lei ;
Rebar, Edward J. ;
Gregory, Philip D. ;
Urnov, Fyodor D. ;
Amacher, Sharon L. .
NATURE BIOTECHNOLOGY, 2008, 26 (06) :702-708
[7]   Enhancing zinc-finger-nuclease activity with improved obligate heterodimeric architectures [J].
Doyon, Yannick ;
Vo, Thuy D. ;
Mendel, Matthew C. ;
Greenberg, Shon G. ;
Wang, Jianbin ;
Xia, Danny F. ;
Miller, Jeffrey C. ;
Urnov, Fyodor D. ;
Gregory, Philip D. ;
Holmes, Michael C. .
NATURE METHODS, 2011, 8 (01) :74-U108
[8]   Rapid Mutation of Endogenous Zebrafish Genes Using Zinc Finger Nucleases Made by Oligomerized Pool ENgineering (OPEN) [J].
Foley, Jonathan E. ;
yeh, Jing-Ruey J. ;
Maeder, Morgan L. ;
Reyon, Deepak ;
Sander, Jeffry D. ;
Peterson, Randall T. ;
Joung, J. Keith .
PLOS ONE, 2009, 4 (02)
[9]   Efficient induction of transgene-free human pluripotent stem cells using a vector based on Sendai virus, an RNA virus that does not integrate into the host genome [J].
Fusaki, Noemi ;
Ban, Hiroshi ;
Nishiyama, Akiyo ;
Saeki, Koichi ;
Hasegawa, Mamoru .
PROCEEDINGS OF THE JAPAN ACADEMY SERIES B-PHYSICAL AND BIOLOGICAL SCIENCES, 2009, 85 (08) :348-362
[10]   Somatic coding mutations in human induced pluripotent stem cells [J].
Gore, Athurva ;
Li, Zhe ;
Fung, Ho-Lim ;
Young, Jessica E. ;
Agarwal, Suneet ;
Antosiewicz-Bourget, Jessica ;
Canto, Isabel ;
Giorgetti, Alessandra ;
Israel, Mason A. ;
Kiskinis, Evangelos ;
Lee, Je-Hyuk ;
Loh, Yuin-Han ;
Manos, Philip D. ;
Montserrat, Nuria ;
Panopoulos, Athanasia D. ;
Ruiz, Sergio ;
Wilbert, Melissa L. ;
Yu, Junying ;
Kirkness, Ewen F. ;
Izpisua Belmonte, Juan Carlos ;
Rossi, Derrick J. ;
Thomson, James A. ;
Eggan, Kevin ;
Daley, George Q. ;
Goldstein, Lawrence S. B. ;
Zhang, Kun .
NATURE, 2011, 471 (7336) :63-U76