5.9
CiteScore
5.9
Impact Factor

2014 Vol. 41, No. 2

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Natural Selection on Human Y Chromosomes
Chuan-Chao Wang, Li Jin, Hui Li
2014, 41(2): 47-52. doi: 10.1016/j.jgg.2014.01.006
Abstract (83) HTML PDF (0)
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Original research
Protein Interaction Between p53 and Δ113p53 Is Required for the Anti-Apoptotic Function of Δ113p53
Zhao Ou, Le Yin, Changqing Chang, Jinrong Peng, Jun Chen
2014, 41(2): 53-62. doi: 10.1016/j.jgg.2014.01.001
Abstract (142) HTML PDF (0)
Abstract:
Zebrafish Δ113p53, an N-terminal truncated p53 isoform, is a p53-target gene that antagonises p53-mediated apoptotic activity. Interestingly, Δ113p53 does not act on p53 in a dominant-negative manner, but rather interferes with the p53 function by differentially modulating p53-target gene expression to protect cells from apoptosis. Previous studies showed that over-expressed Δ113p53 and p53 proteins formed a complex. However, it is not known whether endogenous p53 and Δ113p53 proteins also interact with each other, and if this interaction is required for Δ113p53 to inhibit the apoptotic activity of full-length p53. In this study, we used two available zebrafish p53 antibodies to address these questions. One, Zfp53-N, only recognises full-length p53, whereas the other, Zfp53-A7C10, detects both full-length p53 and Δ113p53. Using Zfp53-N for immunoprecipitation and Zfp53-A7C10 for detection, we demonstrated that endogenous Δ113p53 and full-length p53 induced by a DNA-damaging drug formed a complexin vivo. Furthermore, of the six Δ113p53 mutants we generated with different point mutations in the oligomerisation domain, two failed to interact with p53 and lost the ability to modulate p53-target gene expression and inhibit p53-induced cell apoptosis. However, those Δ113p53 mutants that could interact with p53 retained the ability to antagonise the apoptotic activity of p53. Therefore, our data demonstrated that protein–protein interaction between Δ113p53 and p53 is essential for the anti-apoptotic function of Δ113p53. In addition, the two Δ113p53 mutants that failed to interact with p53 are also useful for the study of the mechanisms of other functions of Δ113p53.
Targeted Mutagenesis in Zea mays Using TALENs and the CRISPR/Cas System
Zhen Liang, Kang Zhang, Kunling Chen, Caixia Gao
2014, 41(2): 63-68. doi: 10.1016/j.jgg.2013.12.001
Abstract (111) HTML PDF (4)
Abstract:
Transcription activator-like effector nucleases (TALENs) and clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated (Cas) systems have emerged as powerful tools for genome editing in a variety of species. Here, we report, for the first time, targeted mutagenesis in Zea mays using TALENs and the CRISPR/Cas system. We designed five TALENs targeting 4 genes, namely ZmPDS, ZmIPK1A, ZmIPK, ZmMRP4, and obtained targeting efficiencies of up to 23.1% in protoplasts, and about 13.3% to 39.1% of the transgenic plants were somatic mutations. Also, we constructed two gRNAs targeting the ZmIPK gene in maize protoplasts, at frequencies of 16.4% and 19.1%, respectively. In addition, the CRISPR/Cas system induced targeted mutations in Z. mays protoplasts with efficiencies (13.1%) similar to those obtained with TALENs (9.1%). Our results show that both TALENs and the CRISPR/Cas system can be used for genome modification in maize.
Letter to the Editor
A Long Type of TBCK Is a Novel Cytoplasmic and Mitotic Apparatus-Associated Protein Likely Suppressing Cell Proliferation
Jin Wu, Qianyi Li, Yan Li, Jing Lin, Dong Yang, Guixin Zhu, Limin Wang, Dacheng He, Guanting Lu, Changqing Zeng
2014, 41(2): 69-72. doi: 10.1016/j.jgg.2013.12.006
Abstract (102) HTML PDF (0)
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Acquired Cardiomyopathy Caused by Cardiac Tsc1 Deficiency
Yi Chen, Fang Wang, Chunjia Li, Lianmei Wang, Hongbing Zhang, Hongbing Yan
2014, 41(2): 73-77. doi: 10.1016/j.jgg.2013.11.005
Abstract (46) HTML PDF (0)
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One Novel Long Noncoding RNA lnc10 in Drosophila
Meixia Li, Mengbo Xu, Shengyun Wen, Baoyan Bai, Runsheng Chen, Li Liu
2014, 41(2): 79-82. doi: 10.1016/j.jgg.2013.12.007
Abstract (62) HTML PDF (0)
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