Pietrasanta L I, Thrower D, Hsieh W, Rao S, Stemmann O, Lechner J, Carbon J, Hansma H
Department of Physics, Cellular, and Developmental Biology, University of California, Santa Barbara, CA 93106, USA.
Proc Natl Acad Sci U S A. 1999 Mar 30;96(7):3757-62. doi: 10.1073/pnas.96.7.3757.
Yeast centromeric DNA (CEN DNA) binding factor 3 (CBF3) is a multisubunit protein complex that binds to the essential CDEIII element in CEN DNA. The four CBF3 proteins are required for accurate chromosome segregation and are considered to be core components of the yeast kinetochore. We have examined the structure of the CBF3-CEN DNA complex by atomic force microscopy. Assembly of CBF3-CEN DNA complexes was performed by combining purified CBF3 proteins with a DNA fragment that includes the CEN region from yeast chromosome III. Atomic force microscopy images showed DNA molecules with attached globular bodies. The contour length of the DNA containing the complex is approximately 9% shorter than the DNA alone, suggesting some winding of DNA within the complex. The measured location of the single binding site indicates that the complex is located asymmetrically to the right of CDEIII extending away from CDEI and CDEII, which is consistent with previous data. The CEN DNA is bent approximately 55 degrees at the site of complex formation. A significant fraction of the complexes are linked in pairs, showing three to four DNA arms, with molecular volumes approximately three times the mean volumes of two-armed complexes. These multi-armed complexes indicate that CBF3 can bind two DNA molecules together in vitro and, thus, may be involved in holding together chromatid pairs during mitosis.
酵母着丝粒DNA(CEN DNA)结合因子3(CBF3)是一种多亚基蛋白复合体,可与CEN DNA中的必需CDEIII元件结合。这四种CBF3蛋白对于精确的染色体分离是必需的,并且被认为是酵母动粒的核心组成部分。我们已经通过原子力显微镜检查了CBF3-CEN DNA复合体的结构。通过将纯化的CBF3蛋白与包含酵母染色体III着丝粒区域的DNA片段相结合来进行CBF3-CEN DNA复合体的组装。原子力显微镜图像显示了带有附着球状物体的DNA分子。包含该复合体的DNA的轮廓长度比单独的DNA短约9%,这表明复合体内的DNA存在一些缠绕。单个结合位点的测量位置表明,该复合体不对称地位于CDEIII右侧,远离CDEI和CDEII延伸,这与先前的数据一致。CEN DNA在复合体形成位点处弯曲约55度。相当一部分复合体成对连接,显示出三到四条DNA臂,分子体积约为双臂复合体平均体积的三倍。这些多臂复合体表明CBF3在体外可以将两个DNA分子结合在一起,因此可能在有丝分裂期间参与姐妹染色单体对的结合。