Cross G A, Wirtz L E, Navarro M
The Rockefeller University, New York, NY 10021, USA.
Mol Biochem Parasitol. 1998 Mar 1;91(1):77-91. doi: 10.1016/s0166-6851(97)00186-2.
Current understanding of expression-site transcription in Trypanosoma brucei, has been refined by recent results of promoter manipulations at vsg expression sites (ES) and examination of the behavior of ES promoters in ectopic locations both within the ES and at other loci. In summary, ES promoter sequences inserted into non-transcribed rRNA spacers are generally inactive, or have low activity, in bloodstream and procyclic forms. Some mechanism apparently operates to ensure full activation of a single ES in bloodstream-form trypanosomes and the inactivity of all ES promoters in procyclic forms. As previously shown, a rRNA promoter can replace an ES promoter. In bloodstream forms, the replacement rRNA promoter was down-regulated in a 'silent' ES but it was active in procyclic forms. In addition to manipulations of endogenous promoters, we have recently shown that, when an ES promoter is replaced by a T7 promoter, the T7 promoter is unregulated but transcription is attenuated before the vsg, and another ES switches on to maintain cell viability. However, T7 transcription is repressed in the context of core ES-promoter sequences in both stages, particularly in procyclic forms. These observations strongly argue that sequences in the vicinity of the ES core promoter play a role in ES control by nucleating critical events in silencing as well as in activation. Deletions of sequences surrounding the ES core promoter, in situ, did not affect its activity or regulation. In bloodstream forms, rRNA or ES promoters inserted adjacent to silent telomeres or to a non-telomeric 'basic-copy' vsg were > 98% repressed. After transformation to procyclic forms, the sub-telomeric rRNA promoter regained about 10% of its maximal activity but the 'basic-copy' rRNA promoter was fully active. Similarly-positioned ES promoters remained silent in procyclic forms. These results suggest that telomere-proximal or vsg-proximal sequences might mediate suppression of transcription via position-effects that could be sufficient to suppress the expression of chromosome-internal vsgs or telomeric metacyclic vsgs, in bloodstream-form trypanosomes. Recent experiments with T7 promoters indicate that sequences within the ES core promoter might be responsible for silencing ES promoters in procyclic forms. Precedents for regulatory mechanisms that modulate transcription over large chromatin domains are reviewed and possible models for ES regulation are presented.
对布氏锥虫表达位点转录的当前理解,已因近期在可变表面糖蛋白(VSG)表达位点(ES)进行启动子操纵以及对ES启动子在ES内异位位置和其他基因座处行为的研究结果而得到完善。总之,插入非转录rRNA间隔区的ES启动子序列在血流和前循环形式中通常无活性或活性较低。显然存在某种机制来确保血流形式锥虫中单个ES的完全激活以及前循环形式中所有ES启动子的无活性。如先前所示,rRNA启动子可替代ES启动子。在血流形式中,替代的rRNA启动子在“沉默”的ES中被下调,但在前循环形式中具有活性。除了对内源启动子的操纵外,我们最近还表明,当ES启动子被T7启动子替代时,T7启动子不受调控,但转录在VSG之前衰减,并且另一个ES开启以维持细胞活力。然而,在两个阶段中,T7转录在核心ES启动子序列的背景下均受到抑制,在前循环形式中尤其如此。这些观察结果有力地表明,ES核心启动子附近的序列通过引发沉默和激活中的关键事件,在ES控制中发挥作用。原位删除ES核心启动子周围的序列,并不影响其活性或调控。在血流形式中,插入沉默端粒附近或非端粒“基本拷贝”VSG附近的rRNA或ES启动子被抑制>98%。转化为前循环形式后,端粒亚端粒rRNA启动子恢复了约10%的最大活性,但“基本拷贝”rRNA启动子完全有活性。位置相似的ES启动子在前循环形式中仍保持沉默。这些结果表明,端粒近端或VSG近端序列可能通过位置效应介导转录抑制,这种效应足以抑制血流形式锥虫中染色体内部VSG或端粒循环后期VSG的表达。近期用T7启动子进行的实验表明,ES核心启动子内的序列可能负责在前循环形式中沉默ES启动子。本文综述了调节大染色质域转录的调控机制的先例,并提出了ES调控的可能模型。