MRC Genome Damage and Stability Centre, University of Sussex, Falmer, UK.
Bioessays. 2011 Jul;33(7):529-37. doi: 10.1002/bies.201100002. Epub 2011 May 17.
Recent discoveries have identified the small ubiquitin-like modifier (SUMO) as the potential 'missing link' that could explain how the synaptonemal complex (SC) is formed during meiosis. The SC is important for a variety of chromosome interactions during meiosis and appears ladder-like. It is formed when 'axes' of the two homologous chromosomes become connected by the deposition of transverse filaments, forming the steps of the ladder. Although several components of axial and transverse elements have been identified, how the two are connected to form the SC has remained an enigma. Recent discoveries suggest that SUMO modification underlies protein-protein interactions within the SC of budding yeast. The versatility of SUMO in regulating protein-protein interactions adds an exciting new dimension to our understanding of the SC and suggests that SCs are not homogenous structures throughout the nucleus. We propose that this heterogeneity may allow differential regulation of chromosome structure and function.
最近的发现将小泛素样修饰物(SUMO)确定为潜在的“缺失环节”,可以解释联会复合体(SC)在减数分裂过程中是如何形成的。SC 对于减数分裂过程中各种染色体相互作用很重要,并且呈梯状。当两个同源染色体的“轴”通过横向丝的沉积连接起来时,就形成了梯子的梯级。虽然已经鉴定出了许多轴和横向元件的成分,但两个元件如何连接形成 SC 仍然是一个谜。最近的发现表明,SUMO 修饰是芽殖酵母 SC 内蛋白-蛋白相互作用的基础。SUMO 在调节蛋白-蛋白相互作用方面的多功能性为我们理解 SC 增加了一个令人兴奋的新维度,并表明 SC 并不是整个核内的均质结构。我们提出,这种异质性可能允许对染色体结构和功能进行差异调节。