Acta Laser Biology Sinica, Volume. 31, Issue 2, 142(2022)
Construction of the Zebrafish Hand2 Gene-knockout Line by Using CRISPR/Cas9
[2] [2] FIRULLI A B. A HANDful of questions: the molecular biology of the heart and neural crest derivatives (HAND)-subclass of basic helix-loop-helix transcription factors[J]. Gene, 2003, 312: 27-40.
[3] [3] SRIVASTAVA D, CSERJESI P, OLSON E N. A subclass of bHLH proteins required for cardiac morphogenesis[J]. Science, 1995, 270(5244): 1995-1999.
[4] [4] SRIVASTAVA D, THOMAS T, LIN Q, et al. Regulation of cardiac mesodermal and neural crest development by the bHLH transcription factor, dHAND[J]. Nature Genetics, 1997, 16(2): 154-160.
[5] [5] TAMURA M, AMANO T, SHIROISHI T. The Hand2 gene dosage effect in developmental defects and human congenital disorders[J]. Current Topics in Developmental Biology, 2014, 110: 129-152.
[6] [6] SRIVASTAVA D. HAND proteins: molecular mediators of cardiac development and congenital heart disease[J]. Trends in Cardiovascular Medicine, 1999, 9(1/2): 11-18.
[7] [7] FIRULLI A B, THATTALIYATH B D. Transcription factors in cardiogenesis: the combinations that unlock the mysteries of the heart[J]. Survey of Cell Biology, 2002, 214: 1-62.
[8] [8] NATARAJAN A, YAMAGISHI H, AHMAD F, et al. Human eHAND, but not dHAND, is down-regulated in cardiomyopathies[J]. Journal of Molecular and Cellular Cardiology, 2001, 33(9): 1607-1614.
[9] [9] YANAGISAWA H, CLOUTHIER D E, RICHARDSON J A. Targeted deletion of a branchial arch-specific enhancer reveals a role of dHAND in craniofacial development[J]. Development, 2003, 130(6): 1069-1078.
[10] [10] CHU L M, YIN H M, GAO L, et al. Cardiac Na+-Ca2+ exchanger 1 (ncx1h) is critical for the ventricular cardiomyocyte formation via regulating the expression levels of gata4 and hand2 in zebrafish[J]. Science China Life Sciences, 2021, 64(2): 255-268.
[11] [11] GENGE C E, LIN E, LEE L, et al. The zebrafish heart as a model of mammalian cardiac function[J]. Reviews of Physiology Biochemistry and Pharmacology, 2016, 171: 99-136.
[12] [12] MARLOW F L. Setting up for gastrulation in zebrafish[J]. Current Topics in Developmental Biology, 2020, 136: 33-83.
[13] [13] CHERESIZ S V, VOLGIN A D, EVSYUKOVA A K, et al. Understanding neurobehavioral genetics of zebrafish[J]. Journal of Neurogenetics, 2020, 34(2): 203-215.
[14] [14] YALCIN H C, AMINDARI A, BUTCHER J T, et al. Heart function and hemodynamic analysis for zebrafish embryos[J]. Developmental Dynamics, 2017, 246(11): 868-880.
[15] [15] GUPTA D, BHATTACHARJEE O, MANDAL D, et al. CRISPR-Cas9 system: a new-fangdawn in gene editing[J]. Life Sciences, 2019, 232: 116636.
[16] [16] DOUDNA J A, CHARPENTIER E. The new frontier of genome engineering with CRISPR-Cas9[J]. Science, 2014, 346(6213): 1258096.
[17] [17] JANIK E, NIEMCEWICA M, CEREMUGA M, et al. Various aspects of a gene editing system-CRISPR-Cas9[J]. International Journal of Molecular Sciences, 2020, 21(24): 9604.
[18] [18] VERMERSCH E, JOUVE C, HULOT J S. CRISPR/Cas9 gene-editing strategies in cardiovascular cells[J]. Cardiovascular Research, 2020, 116(5): 894-907.
[19] [19] YIP B H. Recent advances in CRISPR/Cas9 delivery strategies[J]. Biomolecules, 2020, 10(6): 839.
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TAN Zhixia, ZHANG Jian, LYU Dan, JIANG Zhigang, YUAN Wuzhou, WU Xiushan, YE?Xiangli. Construction of the Zebrafish Hand2 Gene-knockout Line by Using CRISPR/Cas9[J]. Acta Laser Biology Sinica, 2022, 31(2): 142
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Received: Mar. 9, 2022
Accepted: --
Published Online: Jul. 25, 2022
The Author Email: YE?Xiangli (ye_xiangli@hunnu.edu.cn)