MAPPING CELL FATE AND FUNCTION USING RECOMBINASE-BASED INTERSECTIONAL STRATEGIES

被引:91
作者
Dymecki, Susan M. [1 ]
Ray, Russell S. [1 ]
Kim, Jun C. [1 ]
机构
[1] Harvard Univ, Sch Med, Dept Genet, Boston, MA 02115 USA
来源
METHODS IN ENZYMOLOGY, VOL 477: GUIDE TO TECHNIQUES IN MOUSE DEVELOPMENT, PART B: MOUSE MOLECULAR GENETICS, SECOND EDITION | 2010年 / 477卷
关键词
SITE-SPECIFIC RECOMBINATION; PROTEIN-COUPLED RECEPTORS; REPORTER MOUSE LINE; BAC TRANSGENIC MICE; NEURONAL-ACTIVITY; CRE RECOMBINASE; DELETER MICE; MEDIATED RECOMBINATION; SYNAPTIC-TRANSMISSION; TARGETED EXPRESSION;
D O I
10.1016/S0076-6879(10)77011-7
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Cell types are typically defined by expression of a unique combination of genes, rather than a single gene. Intersectional methods therefore become crucial to selectively access these cells for higher resolution fate mapping and functional manipulations. Here, we discuss one such intersectional method. Two recombinase systems (Cre/loxP and Flp/FRT) work together to remove a double STOP cassette and thereby activate expression of a target transgene solely in cells defined by a particular pairwise combination of driver genes. Depending on the nature of the target transgene, this strategy can be used to deliver cell-lineage tracers, sensors, and/or effector molecules to highly selective cell types in vivo. In this chapter, we discuss concepts, reagents, and methods underlying this intersectional approach and encourage consideration of various intersectional and binary methods for accessing uniquely defined cell subsets in the mouse.
引用
收藏
页码:183 / 213
页数:31
相关论文
共 84 条
[21]   NEURONS AND GLIA ARISE FROM A COMMON PROGENITOR IN CHICKEN OPTIC TECTUM - DEMONSTRATION WITH 2 RETROVIRUSES AND CELL TYPE-SPECIFIC ANTIBODIES [J].
GALILEO, DS ;
GRAY, GE ;
OWENS, GC ;
MAJORS, J ;
SANES, JR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (01) :458-462
[22]   Targeting cre recombinase to specific neuron Populations with bacterial artificial chromosome constructs [J].
Gong, Shiaoching ;
Doughty, Martin ;
Harbaugh, Carroll R. ;
Cummins, Alexander ;
Hatten, Mary E. ;
Heintz, Nathaniel ;
Gerfen, Charles R. .
JOURNAL OF NEUROSCIENCE, 2007, 27 (37) :9817-9823
[23]   Multiple-Color Optical Activation, Silencing, and Desynchronization of Neural Activity, with Single-Spike Temporal Resolution [J].
Han, Xue ;
Boyden, Edward S. .
PLOS ONE, 2007, 2 (03)
[24]   Millisecond-Timescale Optical Control of Neural Dynamics in the Nonhuman Primate Brain [J].
Han, Xue ;
Qian, Xiaofeng ;
Bernstein, Jacob G. ;
Zhou, Hui-hui ;
Franzesi, Giovanni Talei ;
Stern, Patrick ;
Bronson, Roderick T. ;
Graybiel, Ann M. ;
Desimone, Robert ;
Boyden, Edward S. .
NEURON, 2009, 62 (02) :191-198
[25]   Bac to the future: The use of bac transgenic mice for neuroscience research [J].
Heintz, N .
NATURE REVIEWS NEUROSCIENCE, 2001, 2 (12) :861-870
[26]   Redefining the serotonergic system by genetic lineage [J].
Jensen, Patricia ;
Farago, Anna F. ;
Awatramani, Rajeshwar B. ;
Scott, Michael M. ;
Deneris, Evan S. ;
Dymecki, Susan M. .
NATURE NEUROSCIENCE, 2008, 11 (04) :417-419
[27]   Building a Zoo of Mice for Genetic Analyses: A Comprehensive Protocol for the Rapid Generation of BAC Transgenic Mice [J].
Johansson, Torbjoern ;
Broll, Ilia ;
Frenz, Theresa ;
Hemmers, Saskia ;
Becher, Burkhard ;
Zeilhofer, Hanns Ulrich ;
Buch, Thorsten .
GENESIS, 2010, 48 (04) :264-280
[28]   Genetic inducible fate mapping in mouse: Establishing genetic lineages and defining genetic neuroanatomy in the nervous system [J].
Joyner, Alexandra L. ;
Zervas, Mark .
DEVELOPMENTAL DYNAMICS, 2006, 235 (09) :2376-2385
[29]   High-efficiency CAG-FLPe deleter mice in C57BL/6J background [J].
Kanki, H ;
Suzuki, H ;
Itohara, S .
EXPERIMENTAL ANIMALS, 2006, 55 (02) :137-141
[30]   VITAL DYE MAPPING OF GASTRULA AND NEURULA OF XENOPUS-LAEVIS .1. PROSPECTIVE AREAS AND MORPHOGENETIC MOVEMENTS OF SUPERFICIAL LAYER [J].
KELLER, RE .
DEVELOPMENTAL BIOLOGY, 1975, 42 (02) :222-241