Combinations of chromosome transfer and genome editing for the development of cell/animal models of human disease and humanized animal models

被引:15
作者
Uno, Narumi [1 ,2 ]
Abe, Satoshi [1 ]
Oshimura, Mitsuo [1 ,3 ]
Kazuki, Yasuhiro [1 ,2 ]
机构
[1] Tottori Univ, Chromosome Engn Res Ctr, 86 Nishi Cho, Yonago, Tottori 6838503, Japan
[2] Tottori Univ, Grad Sch Med Sci, Inst Regenerat Med & Biofunct, Dept Biomed Sci, 86 Nishi Cho, Yonago, Tottori 6838503, Japan
[3] Trans Chromos Inc, 86 Nishi Cho, Yonago, Tottori 6838503, Japan
基金
日本学术振兴会;
关键词
HUMAN ARTIFICIAL CHROMOSOME; TRANSIENT MYELOPROLIFERATIVE DISORDER; MICROCELL-MEDIATED TRANSFER; NIJMEGEN BREAKAGE SYNDROME; EMBRYONIC STEM-CELLS; HAC VECTOR SYSTEM; DOWN-SYNDROME; NATURAL-HISTORY; GENE-EXPRESSION; GERMLINE TRANSMISSION;
D O I
10.1038/s10038-017-0378-7
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Chromosome transfer technology, including chromosome modification, enables the introduction of Mb-sized or multiple genes to desired cells or animals. This technology has allowed innovative developments to be made for models of human disease and humanized animals, including Down syndrome model mice and humanized transchromosomic (Tc) immunoglobulin mice. Genome editing techniques are developing rapidly, and permit modifications such as gene knockout and knockin to be performed in various cell lines and animals. This review summarizes chromosome transfer-related technologies and the combined technologies of chromosome transfer and genome editing mainly for the production of cell/animal models of human disease and humanized animal models. Specifically, these include: (1) chromosome modification with genome editing in Chinese hamster ovary cells and mouse A9 cells for efficient transfer to desired cell types; (2) single-nucleotide polymorphism modification in humanized Tc mice with genome editing; and (3) generation of a disease model of Down syndrome-associated hematopoiesis abnormalities by the transfer of human chromosome 21 to normal human embryonic stem cells and the induction of mutation(s) in the endogenous gene(s) with genome editing. These combinations of chromosome transfer and genome editing open up new avenues for drug development and therapy as well as for basic research.
引用
收藏
页码:145 / 156
页数:12
相关论文
共 105 条
[1]   The Renaissance rat [J].
Abbott, A .
NATURE, 2004, 428 (6982) :464-466
[2]   Modification of single-nucleotide polymorphism in a fully humanized CYP3A mouse by genome editing technology [J].
Abe, Satoshi ;
Kobayashi, Kaoru ;
Oji, Asami ;
Sakuma, Tetsushi ;
Kazuki, Kanako ;
Takehara, Shoko ;
Nakamura, Kazuomi ;
Okada, Azusa ;
Tsukazaki, Yasuko ;
Senda, Naoto ;
Honma, Kazuhisa ;
Yamamoto, Takashi ;
Ikawa, Masahito ;
Chiba, Kan ;
Oshimura, Mitsuo ;
Kazuki, Yasuhiro .
SCIENTIFIC REPORTS, 2017, 7
[3]  
Abe Satoshi, 2010, Genome Integr, V1, P6, DOI 10.1186/2041-9414-1-6
[4]   Natural history of GATA1 mutations in Down syndrome [J].
Ahmed, M ;
Sternberg, A ;
Hall, G ;
Thomas, A ;
Smith, O ;
O'Marcaigh, A ;
Wynn, R ;
Stevens, R ;
Addison, M ;
King, D ;
Stewart, B ;
Gibson, B ;
Roberts, I ;
Vyas, P .
BLOOD, 2004, 103 (07) :2480-2489
[5]   Systematic Cellular Disease Models Reveal Synergistic Interaction of Trisomy 21 and GATA1 Mutations in Hematopoietic Abnormalities [J].
Banno, Kimihiko ;
Omori, Sayaka ;
Hirata, Katsuya ;
Nawa, Nobutoshi ;
Nakagawa, Natsuki ;
Nishimura, Ken ;
Ohtaka, Manami ;
Nakanishi, Mahito ;
Sakuma, Tetsushi ;
Yamamoto, Takashi ;
Toki, Tsutomu ;
Ito, Etsuro ;
Yamamoto, Toshiyuki ;
Kokubu, Chikara ;
Takeda, Junji ;
Taniguchi, Hidetoshi ;
Arahori, Hitomi ;
Wada, Kazuko ;
Kitabatake, Yasuji ;
Ozono, Keiichi .
CELL REPORTS, 2016, 15 (06) :1228-1241
[6]   The Genome Project-Write [J].
Boeke, Jef D. ;
Church, George ;
Hessel, Andrew ;
Kelley, Nancy J. ;
Arkin, Adam ;
Cai, Yizhi ;
Carlson, Rob ;
Chakravarti, Aravinda ;
Cornish, Virginia W. ;
Holt, Liam ;
Isaacs, Farren J. ;
Kuiken, Todd ;
Lajoi, Marc ;
Lessor, Tracy ;
Lunshof, Jeantine ;
Maurano, Matthew T. ;
Mitchell, Leslie A. ;
Rine, Jasper ;
Rosser, Susan ;
Sanjana, Neville E. ;
Silver, Pamela A. ;
Valle, David ;
Wang, Harris ;
Way, Jeffrey C. ;
Yang, Luhan .
SCIENCE, 2016, 353 (6295) :126-127
[7]   Chromosome engineering in zygotes with CRISPR/Cas9 [J].
Boroviak, Katharina ;
Doe, Brendan ;
Banerjee, Ruby ;
Yang, Fengtang ;
Bradley, Allan .
GENESIS, 2016, 54 (02) :78-85
[8]   Dynamic Imaging of Genomic Loci in Living Human Cells by an Optimized CRISPR/Cas System [J].
Chen, Baohui ;
Gilbert, Luke A. ;
Cimini, Beth A. ;
Schnitzbauer, Joerg ;
Zhang, Wei ;
Li, Gene-Wei ;
Park, Jason ;
Blackburn, Elizabeth H. ;
Weissman, Jonathan S. ;
Qi, Lei S. ;
Huang, Bo .
CELL, 2013, 155 (07) :1479-1491
[9]   Analysis of off-target effects of CRISPR/Cas-derived RNA-guided endonucleases and nickases [J].
Cho, Seung Woo ;
Kim, Sojung ;
Kim, Yongsub ;
Kweon, Jiyeon ;
Kim, Heon Seok ;
Bae, Sangsu ;
Kim, Jin-Soo .
GENOME RESEARCH, 2014, 24 (01) :132-141
[10]   Generation of transgenic mice and germline transmission of a mammalian artificial chromosome introduced into embryos by pronuclear microinjection [J].
Co, DO ;
Borowski, AH ;
Leung, JD ;
van der Kaa, J ;
Hengst, S ;
Platenburg, GJ ;
Pieper, FR ;
Perez, CF ;
Jirik, FR ;
Drayer, JI .
CHROMOSOME RESEARCH, 2000, 8 (03) :183-191