DNA的复制课件.ppt
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1、DNA的复制,God said to them:“Be fruitful and multiply!”圣经创世纪,第一节 DNA复制概貌,一、DNA复制的半保留性,二、复制过程中的顺序性复制从原点开始边解链边复制 为什么不采取先将DNA全部解链,然后再分别进行复制的方法?,三、DNA的半不连续复制,冈崎片段的发现,DNA只能从5到3方向合成不能从两端同时复制,3,5磷酸二酯键的形成,第二节 DNA的复制酶和相关蛋白,一、DNA聚合酶种类:DNA聚合酶I:1956年,Kornberg具有聚合酶、3-5 外切核酸酶、5-3 外切核酸酶活性主要生理功能:主要的DNA修复酶,并参与半保留复制,Roge
2、r,Kenneth,Sylvy,Arthur and Thomas.,DNA聚合酶II:没有5-3 外切核酸酶活性,次要的DNA修复酶DNA聚合酶III:是真正的DNA复制酶多亚基多层次组装DNA聚合酶IV和V:参与SOS修复,DNA聚合酶III的结构:DNA聚合酶 3-5核酸外切酶 激活外切酶活性 使核心酶结合为二聚体;结合复合物 结合ATP 与亚基结合与和亚基结合 与SSB 蛋白结合 与和亚基结合 sliding clamp(滑动夹环),核心酶 Pol III,Pol III,Pol III*,复合体,sliding clamp,二、解螺旋酶(helicase):A helicase is
3、 an enzyme that uses energy provided by NTP hydrolysis to separate the strands of a nucleic acid duplex,三、SSB蛋白(单链结合蛋白)The single-strand binding protein(SSB)attaches to single-stranded DNA,thereby preventing the DNA from forming a duplex 防止单链复性维持单链刚性状态避免单链降解The SSB binds as a monomer,but typically i
4、n a cooperative manner in which the binding of one protein molecule makes it much easier for another to bind,四、引发酶(primase):The primase is a type of RNA polymerase that synthesizes short segments of RNA that will be used as primers for DNA replication.为什么DNA的合成需要RNA引物?,五、旋转酶(gyrase):a Type II topois
5、omerase,acts to overcome the torsional stress imposed upon unwinding by introducing negative supercoils at the expense of ATP hydrolysis.复制叉前进带来扭曲张力拓扑异构酶II:引入负超螺旋,六、DNA连接酶(DNA ligases)DNA ligase makes a bond between an adjacent 3-OH and 5-phosphate end where there is a nick in one strand of duplex D
6、NA.1、酶活化2、AMP转移3、3-OH亲核攻击,第三节 DNA的复制过程,一、原核生物的复制(E.coli)(一)复制的起始:复制原点:Ori C,含两个系列的重复单位,3个13bp重复序列(富含AT),和4个9bp重复序列(识别位点),起始过程:The origin is initially recognized by a protein that forms a large complex with DNA.A short region of AT-rich DNA is melted.Helicase is bound to the complex and creates the r
7、eplication fork.The first nucleotides of the new chain are synthesized into the primer,DnaA protein is the initiation factor:The four 9 bp consensus sequences on the right side of oriC provide the initial binding sites for DnaA.It binds cooperatively to form a central core around which oriC DNA is w
8、rapped.Then DnaA acts at three A-T-rich 13 bp tandem repeats located in the left side of oriC.In the presence of ATP,DnaA melts the DNA strands at each of these sites to form an open complex,HU protein has the capacity to bend DNA,and is involved in building the structure that leads to formation of
9、the open complex.Transcriptional activation:RNA polymerase could be required to read into the origin from adjacent transcription units.The act of transcription could be associated with a structural change that assists melting of DNA.,Hu,The replication fork is generated 2-4 monomers of DnaA bind at
10、the origin,and they recruit 2 prepriming complexes of DnaB-DnaC to bind,so that there is one for each of the two(bidirectional)replication forks.DnaB protein is delivered to oriC by DnaC protein in the form of a hexameric(DnaB:DnaC)6 complex,but DnaC protein does not enter the protein assemblage at
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