Sizova I, Fuhrmann M, Hegemann P
Biological Institute, St. Petersburg State University, Oranienbaumskoye sch., 2, St. Petersburg, 198904 Russia.
Gene. 2001 Oct 17;277(1-2):221-9. doi: 10.1016/s0378-1119(01)00616-3.
Although Chlamydomonas reinhardtii serves as the most popular algal model system, no efficient enzymatic selection marker for the nuclear transformation of wild-type cells is available. We sequenced an aminoglycoside 3'-phosphotransferase gene (aph) from Streptomyces rimosus. Though the derived protein sequence is homologous to members of APH type V, it constitutes a new type, named APHVIII. Since the aphVIII gene has a codon bias similar to that of the nuclear genome of green algae, the aphVIII coding sequence was fused to the 5'- and 3'-untranslated regions of the C. reinhardtii rbcS2 gene. C. reinhardtii transformants were capable of inactivating the antibiotics paromomycin, kanamycin, and neomycin, to which wild-type cells are sensitive. After addition of the 5'-region of hsp70A as a second promoter and insertion of the rbcS2 intron I, the transformation rate increased to two transformants per 1 x 10(5) cells, which is close to the efficiency of transforming auxotrophic strains with the homologous marker arg7. Transformation with the promoter-less aphVIII led to random gene fusion at high frequency. In an aphVIII-based reporter gene assay we have found a so far unknown promoter activity of the 3'-untranslated region of rbcS2, that may promote antisense RNA synthesis from the rbcS2 gene in vivo. We conclude that the aphVIII gene is a useful marker for nuclear transformation and promoter tagging of C. reinhardtii wild-type and probably other green algae.
尽管莱茵衣藻是最常用的藻类模式系统,但目前尚无适用于野生型细胞核转化的高效酶促选择标记。我们对来自龟裂链霉菌的氨基糖苷3'-磷酸转移酶基因(aph)进行了测序。尽管推导的蛋白质序列与APH V型成员同源,但它构成了一种新类型,命名为APHVIII。由于aphVIII基因的密码子偏好与绿藻核基因组相似,因此将aphVIII编码序列与莱茵衣藻rbcS2基因的5'和3'非翻译区融合。莱茵衣藻转化体能够使野生型细胞敏感的抗生素巴龙霉素、卡那霉素和新霉素失活。在添加hsp70A的5'区域作为第二个启动子并插入rbcS2内含子I后,转化率提高到每1×10(5)个细胞有两个转化体,这接近用同源标记arg7转化营养缺陷型菌株的效率。用无启动子的aphVIII进行转化导致高频随机基因融合。在基于aphVIII的报告基因分析中,我们发现rbcS2的3'非翻译区具有迄今未知的启动子活性,这可能在体内促进rbcS2基因的反义RNA合成。我们得出结论,aphVIII基因是莱茵衣藻野生型以及可能其他绿藻核转化和启动子标签的有用标记。