出芽酵母着丝点CBF3-core-Ndc10-DBD复合物的低温电镜结构

IF 16.8 1区 生物学 Nature Structural &Molecular Biology Pub Date : 2018-11-26 DOI:10.2210/PDB6GYP/PDB
K. Yan, Ziguo Zhang, Jing Yang, S. McLaughlin, D. Barford
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引用次数: 3

摘要

着丝点是多组分复合物,负责协调着丝DNA与有丝分裂纺锤体微管的连接。出芽酵母的点着丝粒被组织成三个着丝粒决定元件(cde),并与着丝粒特异性核小体Cse4相关。Cse4在CEN位点的沉积依赖于CBF3复合物,该复合物与CDEIII结合,将Cse4核小体引导至CDEII。为了了解CBF3如何识别CDEIII并定位Cse4,我们确定了CBF3- cen配合物的低温电镜结构。CBF3与CEN DNA作为头对头二聚体相互作用,包括整个CDEIII和直接3'区。CBF3的特异性ccn结合是由CBF3原蛋白之一的Cep3亚基介导的,该亚基与CDEIII的保守和必需的CCG和TGT基序形成主要的凹槽相互作用。我们提出了一个CBF3-Cse4-CEN复合物的模型,这对理解Cse4核小体在CEN位点上的cbf3定向沉积具有重要意义。
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Cryo-EM structure of the CBF3-core-Ndc10-DBD complex of the budding yeast kinetochore
Kinetochores are multicomponent complexes responsible for coordinating the attachment of centromeric DNA to mitotic-spindle microtubules. The point centromeres of budding yeast are organized into three centromeric determining elements (CDEs), and are associated with the centromere-specific nucleosome Cse4. Deposition of Cse4 at CEN loci is dependent on the CBF3 complex that engages CDEIII to direct Cse4 nucleosomes to CDEII. To understand how CBF3 recognizes CDEIII and positions Cse4, we determined a cryo-EM structure of a CBF3-CEN complex. CBF3 interacts with CEN DNA as a head-to-head dimer that includes the whole of CDEIII and immediate 3' regions. Specific CEN-binding of CBF3 is mediated by a Cep3 subunit of one of the CBF3 protomers that forms major groove interactions with the conserved and essential CCG and TGT motifs of CDEIII. We propose a model for a CBF3-Cse4-CEN complex with implications for understanding CBF3-directed deposition of the Cse4 nucleosome at CEN loci.
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来源期刊
Nature Structural &Molecular Biology
Nature Structural &Molecular Biology 生物-生化与分子生物学
自引率
1.80%
发文量
160
期刊介绍: Nature Structural & Molecular Biology is a monthly journal that focuses on the functional and mechanistic understanding of how molecular components in a biological process work together. It serves as an integrated forum for structural and molecular studies. The journal places a strong emphasis on the functional and mechanistic understanding of how molecular components in a biological process work together. Some specific areas of interest include the structure and function of proteins, nucleic acids, and other macromolecules, DNA replication, repair and recombination, transcription, regulation of transcription and translation, protein folding, processing and degradation, signal transduction, and intracellular signaling.
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