首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   24篇
  免费   0篇
  国内免费   3篇
  27篇
  2022年   1篇
  2021年   1篇
  2019年   2篇
  2018年   1篇
  2015年   1篇
  2012年   2篇
  2011年   1篇
  2010年   1篇
  2008年   3篇
  2007年   4篇
  2006年   7篇
  2005年   2篇
  2004年   1篇
排序方式: 共有27条查询结果,搜索用时 0 毫秒
1.
2.
Dehydration-responsive element-binding proteins (DREBs) and ethylene-responsive element (ERE) binding factors are two major subfamilies of the AP2/ethylene-responsive element-binding protein family and play crucial roles in the regulation of abiotic- and biotic-stress responses, respectively. In the present work, we have reported a previously identified DREB-like factor, TINY, that was involved in both abiotic- and biotic-stress signaling pathways. TINY was capable of binding to both DRE and ERE with similar affinity and could activate the expression of reporter genes driven by either of these two elements in tobacco cells. The 15th amino acid in the APETALA2 (AP2)/ethylene-responsive element-binding factor domain was demonstrated to be essential for its specific binding to ERE, whereas the 14th and 19th amino acids were responsible for the binding to DRE. The expression of TINY was greatly activated by drought, cold, ethylene, and slightly by methyl jasmonate. Additionally, overexpression of TINY in Arabidopsis resulted in elevated expressions of both the DRE- and the ERE-containing genes. Moreover, the expression of DRE-regulated genes, such as COR6.6 and ERD10, was up-regulated upon ethylene treatment, and the expression of ERE-regulated genes, such as HLS1, was also increased by cold stress, when the expression of TINY was being induced. These results strongly suggested that TINY might play a role in the cross-talk between abiotic- and biotic-stress-responsive gene expressions by connecting the DRE- and ERE-mediated signaling pathways. The results herein might promote the understanding of the mechanisms of specific DNA recognition and gene expression regulation by DREBs.  相似文献   
3.
4.
从烟草品种k326中克隆到2个干旱应答元件结合蛋白类(DREB-Like)转录因子基因,命名为NtDREBI和NtDREB1A.序列分析发现,NtDREBI和NtDREB1A编码的蛋白质具有典型的AP2/EREBP转录因子家族EREBP亚族A类特征.酵母单杂交结果显示,NtDREBI具有激活功能, 而NtDREB1A不能激活下游基因,但可以与DRE元件结合.将NtDREBI、NtDREB1A与其它AP2/EREBP类转录因子序列比对,发现在C末端第148位氨基酸有显著差别.采用定点突变方法进一步研究表明,DREB1A类转录因子的第148位氨基酸残基与其邻近氨基酸残基的相互作用对调控转录激活功能起关键作用.  相似文献   
5.
Aberrant folding of important proteins caused by genetic mutations is closely correlated to many diseases. Due to the important physiological role in excitable cells, the activity and level of creatine kinase (CK) play a crucial role in maintaining body functions. Muscle CK deficiency disease was identified by an unusual CK activity decrease in an acute myocardial infarction patient caused by the single point mutation D54G. In this research, it was found that the D54G mutant had substantially decreased activity, substrate binding affinity and stability. Spectroscopic experiments indicated that the mutation impaired the structure of CK, which resulted in a partially unfolded state with more hydrophobic exposure and exposed Trp residues. The inability to fold to the functional compact state made the mutant be prone to aggregate upon microenvironmental stresses, and might gradually decrease the CK level of the patient.  相似文献   
6.
Muscle contraction requires high energy fluxes, which are supplied by MM-CK (muscle-type creatine kinase) which couples to the myofibril. However, little is known about the detailed molecular mechanisms of how MM-CK participates in and is regulated during muscle contraction. In the present study, MM-CK is found to physically interact with the slow skeletal muscle-type MyBPC1 (myosin-binding protein C1). The interaction between MyBPC1 and MM-CK depended on the creatine concentration in a dose-dependent manner, but not on ATP, ADP or phosphocreatine. The MyBPC1-CK interaction favoured acidic conditions, and the two molecules dissociated at above pH 7.5. Domain-mapping experiments indicated that MM-CK binds to the C-terminal domains of MyBPC1, which is also the binding site of myosin. The functional coupling of myosin, MyBPC1 and MM-CK is further corroborated using an ATPase activity assay in which ATP expenditure accelerates upon the association of the three proteins, and the apparent K(m) value of myosin is therefore reduced. The results of the present study suggest that MyBPC1 acts as an adaptor to connect the ATP consumer (myosin) and the regenerator (MM-CK) for efficient energy metabolism and homoeostasis.  相似文献   
7.
8.
9.
烟草DREBP转录因子结合DRE元件的关键氨基酸   总被引:1,自引:0,他引:1  
从烟草品种本塞母氏中分离出2条DREB类转录因子基因,分别命名为NbDREB1和 NbDREB2.根据测序结果推导出的氨基酸序列分析显示,NbDREB1和NbDREB2都具有典型的AP2/EREBP转录因子家族EREBP亚族A类特征.酵母单杂交结果显示,它们都不具有激活功能.连接pGADT7反式激活载体形成融合基因表达结果显示,NbDREB1能与DRE顺式作用元件结合,NbDREB2则不能.比较NbDREB1和NbDREB2的AP2区,发现两者的第2和49位氨基酸残基不同.对NbDREB2的第2位氨基酸残基N点突变为Y,NbDREB2也显示出与DRE顺式元件结合的活性,表明烟草DREB转录因子的AP2区第2位氨基酸残基Y是识别及结合DRE顺式作用元件必需的氨基酸残基.  相似文献   
10.
Muscle creatine kinase (CK) is a crucial enzyme in energy metabolism, and it exists in two forms, the reduced form (R-CK) and the oxidized form (O-CK). In contrast with R-CK, O-CK contained an intrachain disulfide bond in each subunit. Here we explored the properties of O-CK and its regulatory role on muscle CK. The intrachain disulfide bond in O-CK was demonstrated to be formed between Cys(74) and Cys(146) by site-directed mutagenesis. Biophysical analysis indicated that O-CK showed decreased catalytic activity and that it might be structurally unstable. Further assays through guanidine hydrochloride denaturation and proteolysis by trypsin and protease K revealed that the tertiary structure of O-CK was more easily disturbed than that of R-CK. Surprisingly, O-CK, unlike R-CK, cannot interact with the M-line protein myomesin through biosensor assay, indicating that O-CK might have no role in muscle contraction. Through in vitro ubiquitination assay, CK was demonstrated to be a specific substrate of muscle ring finger protein 1 (MURF-1). O-CK can be rapidly ubiquitinated by MURF-1, while R-CK can hardly be ubiquitinated, implying that CK might be degraded by the ATP-ubiquitin-proteasome pathway through the generation of O-CK. The results above were further confirmed by molecular modeling of the structure of O-CK. Therefore, it can be concluded that the generation of O-CK was a negative regulation of R-CK and that O-CK might play essential roles in the molecular turnover of MM-CK.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号