Sun Chin-Hung, Su Li-Hsin, Gillin Frances D
Department of Parasitology, College of Medicine, National Taiwan University, Taipei, 100 Taiwan, ROC.
Mol Biochem Parasitol. 2005 Jul;142(1):1-11. doi: 10.1016/j.molbiopara.2005.03.003. Epub 2005 Apr 20.
Gene expression is poorly understood in Giardia lamblia. Previously we utilized the Escherichia coli tetracycline regulatory elements to develop a giardial-inducible gene expression system. In this study, we tested the hypothesis that regions flanking the tet repressor (tet R) may influence its expression and affect inducibility of the regulatory system. We found that addition of a 6-His tag or nuclear localization signal (NLS) at the N- but not C-terminus of tet R, increased the induction ratios >100-fold. A non-specific sequence also increased the induction ratio. Fusing NLS at the N-terminus, also led to exclusively nuclear tet R localization. Changing the promoter from gdh or alpha-giardin to alpha2-tubulin increased the induction ratio slightly. Tet R expression at both RNA and protein levels correlated with repression efficiency, indicating that coding sequences of the 6-His tag or NLS may contribute to transcriptional activation of the exotic tet R gene in Giardia. In addition, we found that the tet R system mediated gene repression and induction during encystation. Previous studies used an artificial reporter gene. In this study, we were able to induce overexpression of epitope-tagged cyst wall protein 1 (CWP1) in vegetatively growing Giardia trophozoites. Moreover, we could repress or induce expression of exogenous CWP1 in encysting cells. Taken together, our data suggest that expression of tet R in Giardia is complex and can be strongly influenced by additional sequences, especially at its N-terminus. This system provides insights into expression of an alien gene and can be exploited to regulate gene expression and study important functions in G. lamblia.
人们对蓝氏贾第鞭毛虫中的基因表达了解甚少。此前,我们利用大肠杆菌四环素调控元件开发了一种贾第虫诱导型基因表达系统。在本研究中,我们测试了以下假设:四环素阻遏物(tetR)侧翼区域可能影响其表达并影响调控系统的诱导性。我们发现,在tetR的N端而非C端添加6-组氨酸标签或核定位信号(NLS),可使诱导率提高100倍以上。一个非特异性序列也提高了诱导率。在N端融合NLS,也导致tetR仅定位于细胞核。将启动子从gdh或α-贾第蛋白改为α2-微管蛋白,可使诱导率略有提高。tetR在RNA和蛋白质水平的表达与抑制效率相关,表明6-组氨酸标签或NLS的编码序列可能有助于贾第虫中外源tetR基因的转录激活。此外,我们发现tetR系统在包囊化过程中介导基因抑制和诱导。此前的研究使用了人工报告基因。在本研究中,我们能够在营养生长的贾第虫滋养体中诱导表位标签化的囊壁蛋白1(CWP1)的过表达。此外,我们可以在包囊化细胞中抑制或诱导外源CWP1的表达。综上所述,我们的数据表明,tetR在贾第虫中的表达很复杂,并且会受到额外序列的强烈影响,尤其是在其N端。该系统为外源基因的表达提供了见解,可用于调节基因表达并研究蓝氏贾第鞭毛虫中的重要功能。