Rusche Laura N, Lynch Patrick J
Department of Biochemistry, Institute for Genome Sciences & Policy, Duke University, Durham, North Carolina, USA.
J Cell Physiol. 2009 Jun;219(3):525-8. doi: 10.1002/jcp.21749.
Heterochromatin, or condensed chromatin, has the potential to encroach into what ordinarily would be euchromatin and repress resident genes. We explore how heterochromatin is restricted to the appropriate regions of the genome, using Saccharomyces cerevisiae as a case study and emphasizing two under-appreciated aspects of silenced chromatin. First, the capacity of silenced chromatin to propagate along a chromosome is limited by the intrinsic instability of the structure. We argue that this limited potential to spread is an important factor restricting silenced chromatin to the vicinity of recruitment sites (silencers). Second, this limited capacity to spread creates the need for additional mechanisms to stabilize silenced chromatin at the required locations. Such mechanisms include the use of multiple silencers and higher-order arrangements of the chromatin fiber. Therefore, to understand how silenced chromatin is restricted to the appropriate genomic locations, researchers must take into account the mechanisms by which silenced chromatin is stabilized in appropriate locations. J. Cell. Physiol. 219: 525-528, 2009. (c) 2009 Wiley-Liss, Inc.
异染色质,即浓缩染色质,有可能侵入通常为常染色质的区域并抑制驻留基因。我们以酿酒酵母为案例研究对象,探讨异染色质如何被限制在基因组的适当区域,并着重强调沉默染色质两个未得到充分重视的方面。首先,沉默染色质沿染色体传播的能力受到结构内在不稳定性的限制。我们认为,这种有限的传播潜力是将沉默染色质限制在募集位点(沉默子)附近的一个重要因素。其次,这种有限的传播能力使得需要额外的机制来在所需位置稳定沉默染色质。这些机制包括使用多个沉默子以及染色质纤维的高阶排列。因此,为了理解沉默染色质如何被限制在适当的基因组位置,研究人员必须考虑沉默染色质在适当位置被稳定的机制。《细胞生理学杂志》219: 525 - 528, 2009年。(c) 2009威利 - 利斯公司。