文献类型: 外文期刊
作者: Peng, Huakang 1 ; Wang, Mengqi 1 ; Wang, Nan 1 ; Yang, Caifeng 1 ; Guo, Wenfang 1 ; Li, Gangqiang 1 ; Huang, Sumei 1 ; Wei, Di 2 ; Liu, Dehu 1 ;
作者机构: 1.Chinese Acad Agr Sci, Biotechnol Res Inst, Beijing 100081, Peoples R China
2.Guangxi Acad Agr Sci, Biotechnol Res Inst, Nanning 530007, Peoples R China
关键词: N-glycosylation site; plasminogen activator; fibrin sensitivity; DSPA alpha 2; Pichia pastoris
期刊名称:CURRENT ISSUES IN MOLECULAR BIOLOGY ( 影响因子:2.976; 五年影响因子:3.139 )
ISSN: 1467-3037
年卷期: 2022 年 44 卷 9 期
页码:
收录情况: SCI
摘要: Bat plasminogen activators alpha 2 (DSPA alpha 2) has extremely high medicinal value as a powerful natural thrombolytic protein. However, wild-type DSPA alpha 2 has two N-glycosylation sites (N185 and N398) and its non-human classes of high-mannose-type N-glycans may cause immune responses in vivo. By mutating the N-glycosylation sites, we aimed to study the effect of its N-glycan chain on plasminogen activation, fibrin sensitivity, and to observe the physicochemical properties of DSPA alpha 2. A logical structure design was performed in this study. Four single mutants and one double mutant were constructed and expressed in Pichia pastoris. When the N398 site was eliminated, the plasminogen activator in the mutants had their activities reduced to similar to 40%. When the N185 site was inactivated, there was a weak decrease in the plasminogen activation of its mutant, while the fibrin sensitivity significantly decreased by similar to 10-fold. Neither N-glycosylation nor deglycosylation mutations changed the pH resistance or heat resistance of DSPA alpha 2. This study confirms that N-glycosylation affects the biochemical function of DSPA alpha 2, which provides a reference for subsequent applications of DSPA alpha 2.
- 相关文献
作者其他论文 更多>>
-
Plant genome resequencing and population genomics: Current status and future prospects
作者:Song, Bo;Ning, Weidong;Jiang, Mengyun;Zhu, Kun;Wang, Xingwei;Cheng, Shifeng;Ning, Weidong;Wei, Di;Jiang, Mengyun;Zhu, Kun;Wang, Xingwei;Jiang, Mengyun;Zhu, Kun;Wang, Xingwei;Edwards, David;Edwards, David;Odeny, Damaris A.
关键词:WGRS; WGS; resequencing; genome variation; adaptation
-
Transposable elements cause the loss of self-incompatibility in citrus
作者:Hu, Jianbing;Liu, Chenchen;Du, Zezhen;Guo, Furong;Song, Dan;Wang, Nan;Jiang, Jingdong;Cao, Zonghong;Shi, Chunmei;Zhang, Siqi;Zhu, Chenqiao;Larkin, Robert;Lin, Zongcheng;Xu, Qiang;Ye, Junli;Deng, Xiuxin;Chai, Lijun;Hu, Jianbing;Liu, Chenchen;Du, Zezhen;Larkin, Robert;Lin, Zongcheng;Xu, Qiang;Deng, Xiuxin;Chai, Lijun;Wei, Zhuangmin;Chen, Peng;Bosch, Maurice;Franklin-Tong, Vernonica
关键词:Self-incompatibility; citrus; S-RNase; S-locus; MITE; evolution
-
Comparison of Activity and Safety of DSPA alpha 1 and Its N-Glycosylation Mutants
作者:Peng, Huakang;Wang, Nan;Wang, Mengqi;Yang, Caifeng;Guo, Wenfang;Li, Gangqiang;Liu, Dehu;Huang, Sumei;Wei, Di
关键词:N-glycosylation sites; plasminogen activator; fibrin selectivity; DSPA alpha 1; rat; drug safety
-
Transcriptomic and metabolomic differences between banana varieties which are resistant or susceptible to Fusarium wilt
作者:Tian, Dandan;Qin, Liuyan;Wei, Liping;Li, Jialin;Li, Baoshen;Zhou, Wei;He, Zhangfei;Wei, Di;Huang, Sumei;Long, Shengfeng;Huang, Quyan;Li, Chaosheng;Verma, Krishan K.;Wei, Shaolong
关键词:Musa sapientum; Foc4; Resistance mechanism; Breeding; Pathogenesis
-
Integrated metabolomic and transcriptomic analyses of regulatory mechanisms associated with uniconazole-induced dwarfism in banana
作者:Qin, Liuyan;Li, Chaosheng;Wei, Liping;Tian, Dandan;Li, Baoshen;Wei, Di;Zhou, Wei;Long, Shengfeng;He, Zhangfei;Huang, Sumei;Wei, Shaolong;Qin, Liuyan;Li, Chaosheng;Wei, Liping;Tian, Dandan;Li, Baoshen;Wei, Di;Zhou, Wei;Long, Shengfeng;He, Zhangfei;Huang, Sumei;Wei, Shaolong;Guo, Chenglin
关键词:Banana dwarfing; Uniconazole; Metabolome; Transcriptome; Flavonoid synthesis
-
Antifungal mechanism of Bacillus amyloliquefaciens strain GKT04 against Fusarium wilt revealed using genomic and transcriptomic analyses
作者:Tian, Dandan;Li, Chaosheng;Zhou, Wei;Qin, Liuyan;Wei, Liping;Di, Wei;Huang, Sumei;Li, Baoshen;Huang, Quyan;Long, Shengfeng;He, Zhangfei;Wei, Shaolong;Song, Xiupeng
关键词:Antifungal; Bacillus amyloliquefaciens; Fusarium Wilt; transcriptome; whole-genome sequencing
-
An array of 60,000 antibodies for proteome-scale antibody generation and target discovery
作者:Wang, Zhaohui;Hou, Bing;Yu, Yuan;Chen, Fulin;Meng, Xun;Li, Yang;Wang, Nan;Chen, Ziqing;Tao, Sheng-ce;Wang, Zhaohui;Hou, Bing;Wang, Mingqiao;Wang, Yuemeng;Cheng, Guangcun;Weng, Weining;Wang, Yiqiang;Tang, Yanfang;Xu, Xuefan;Pan, Rong;Lin, Fei;Meng, Xun;Pronobis, Mira, I;Zheng, Susan;Poss, Kenneth D.;Wang, Shiwei;Ma, Luyan Zulie;Li, Yangrui;Huang, Dongliang;Jiang, Li;Zhang, Qin;Jiang, Li;Zhang, Qin;Wang, Zhiqiang;Zeng, Wenfang;Zhang, Ying;Du, Xuemei;Lin, Ying;Li, Zhiqing;Xia, Qingyou;Geng, Jing;Dai, Huaping;Zhao, Xiao-dong;Tao, Sheng-ce;Yuan, Zheng;Yan, Jian;Yan, Jian;Nie, Qinghua;Zhang, Xiquan;Nie, Qinghua;Zhang, Xiquan;Nie, Qinghua;Zhang, Xiquan;Wang, Kun;Zhu, Yuxian;Wang, Kun;Zhu, Yuxian;Tao, Sheng-ce
关键词:



