个人信息Personal Information
副教授
博士生导师
硕士生导师
性别:男
毕业院校:中国协和医科大学
学位:博士
所在单位:生物工程学院
学科:生物化工. 微生物学. 微生物与生化药学
办公地点:辽宁省大连市高新园区凌工路2号大连理工大学西部校区生物工程学院309室
联系方式:辽宁省大连市高新园区凌工路2号大连理工大学生物工程学院
电子邮箱:yshdong@dlut.edu.cn
Structural and Biochemical Analysis of the Citrate-Responsive Mechanism of the Regulatory Domain of Catabolite Control Protein E from Staphylococcus aureus
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论文类型:期刊论文
发表时间:2018-10-23
发表刊物:BIOCHEMISTRY
收录刊物:SCIE
卷号:57
期号:42
页面范围:6054-6060
ISSN号:0006-2960
摘要:Catabolite control protein E (CcpE) is a LysR-type transcriptional regulator that positively regulates the transcription of the first two enzymes of the TCA cycle, namely, citZ and citB, by sensing accumulated intracellular citrate. CcpE comprises an N-terminal DNA-binding domain and a C-terminal regulatory domain (RD) and senses citrate with conserved arginine residues in the RD. Although the crystal structure of the apo SaCcpE-RD has been reported, the citrate-responsive and DNA-binding mechanisms by which CcpE regulates TCA activity remain unclear. Here, we report the crystal structure of the apo and citrate-bound SaCcpE-RDs. The SaCcpE-RD exhibits conformational changes between the two subdomains via hinge motion of the central beta 4 and beta 10 strands. The citrate molecule is located in a positively charged cavity between the two subdomains and interacts with the highly conserved Ser98, Leu100, Arg145, and Arg256 residues. Compared with that of the apo SaCcpE-RD, the distance between the two subdomains of the citrate-bound SaCcpE-RD is more than similar to 3 angstrom due to the binding of the citrate molecule, and this form exhibits a closed structure. The SaCcpE-RD exhibits various citrate-binding-independent conformational changes at the contacting interface. The SaCcpE-RD prefers the dimeric state in solution, whereas the SaCcpE-FL prefers the tetrameric state. Our results provide insight into the molecular function of SaCcpE.