Hammermann M, Tóth K, Rodemer C, Waldeck W, May R P, Langowski J
Division of Biophysics of Macromolecules, German Cancer Research Center, D-69120 Heidelberg, Germany.
Biophys J. 2000 Jul;79(1):584-94. doi: 10.1016/S0006-3495(00)76318-1.
Using small-angle neutron scattering (SANS), we have measured the salt-dependent static structure factor of di- and trinucleosomes from chicken erythrocytes and from COS-7 cells. We also determined the sedimentation coefficients of these dinucleosomes and dinucleosomes reconstituted on a 416-bp DNA containing two nucleosome positioning sequences of the 5S rDNA of Lytechinus variegatus at low and high salt concentrations. The internucleosomal distance d was calculated by simulation as well as Fourier back-transformation of the SANS curves and by hydrodynamic simulation of sedimentation coefficients. Nucleosome dimers from chicken erythrocyte chromatin show a decrease in d from approximately 220 A at 5 mM NaCl to 150 A at 100 mM NaCl. For dinucleosomes from COS-7 chromatin, d decreases from 180 A at 5 mM to 140 A at 100 mM NaCl concentration. Our measurements on trinucleosomes are compatible with a compaction through two different mechanisms, depending on the salt concentration. Between 0 and 20 mM NaCl, the internucleosomal distance between adjacent nucleosomes remains constant, whereas the angle of the DNA strands entering and leaving the central nucleosome decreases. Above 20 mM NaCl, the adjacent nucleosomes approach each other, similar to the compaction of dinucleosomes. The internucleosomal distance of 140-150 A at 100 mM NaCl is in agreement with distances measured by scanning force microscopy and electron microscopy on long chromatin filaments.
我们使用小角中子散射(SANS)测量了来自鸡红细胞和COS - 7细胞的二核小体和三核小体的盐依赖性静态结构因子。我们还测定了这些二核小体以及在低盐和高盐浓度下在含有两个来自多刺海星5S rDNA核小体定位序列的416 - bp DNA上重构的二核小体的沉降系数。通过对SANS曲线的模拟和傅里叶反变换以及沉降系数的流体动力学模拟来计算核小体间距离d。来自鸡红细胞染色质的核小体二聚体显示d从5 mM NaCl时的约220 Å降至100 mM NaCl时的150 Å。对于来自COS - 7染色质的二核小体,d在5 mM时为180 Å,在100 mM NaCl浓度时降至140 Å。我们对三核小体的测量结果表明,根据盐浓度的不同,通过两种不同机制发生压缩。在0至20 mM NaCl之间,相邻核小体之间的核小体间距离保持恒定,而进入和离开中央核小体的DNA链的角度减小。在20 mM NaCl以上,相邻核小体相互靠近,类似于二核小体的压缩。在100 mM NaCl时140 - 150 Å的核小体间距离与通过扫描力显微镜和电子显微镜在长染色质细丝上测量的距离一致。