Pusarla Rama-Haritha, Bhargava Purnima
Centre for Cellular & Molecular Biology, Tarnaka, Hyderabad, India.
FEBS J. 2005 Oct;272(20):5149-68. doi: 10.1111/j.1742-4658.2005.04930.x.
Recent research suggests that minor changes in the primary sequence of the conserved histones may become major determinants for the chromatin structure regulating gene expression and other DNA-related processes. An analysis of the involvement of different core histone variants in different nuclear processes and the structure of different variant nucleosome cores shows that this may indeed be so. Histone variants may also be involved in demarcating functional regions of the chromatin. We discuss in this review why two of the four core histones show higher variation. A comparison of the status of variants in yeast with those from higher eukaryotes suggests that histone variants have evolved in synchrony with functional requirement of the cell.
近期研究表明,保守组蛋白一级序列中的微小变化可能成为染色质结构的主要决定因素,进而调控基因表达及其他与DNA相关的过程。对不同核心组蛋白变体参与不同核过程以及不同变体核小体核心结构的分析表明,情况可能确实如此。组蛋白变体也可能参与界定染色质的功能区域。在本综述中,我们讨论了四种核心组蛋白中的两种为何表现出更高的变异性。将酵母中变体的情况与高等真核生物中的情况进行比较表明,组蛋白变体是与细胞的功能需求同步进化的。