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Neocallimastix frontalis enolase gene, enol: first report of an intron in an anaerobic fungus

机译:Neocallimastix Frontalis Enolase基因,Enol:在厌氧真菌中的内含子的第一报告

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A DNA clone containing a putative enolase gene was isolated from a genomic DNA library of the anaerobic fungus Neocallimastix frontalis. It was deduced from sequence comparisons that the enolase gene was interrupted by a large 331 bp intron. The enolase gene, termed enol, has an ORF of 1308 bp and encodes a predicted 436 amino acid protein. The deduced amino acid sequence shows high identity (715-71%) to those of enolases from the yeasts Saccharomyces cerevisiae and Candida albicans. The G+ C content of the enolase coding sequence (438 mol%) is considerably higher than the G + C content of the intervening sequence (142 mol%) or the 5′ and 3′ non-translated flanking sequences (152 and 47 mol%, respectively). The codon usage of the N. frontalis enolase gene was very biased as has been found for the highly expressed genes of yeast and filamentous fungi. The gene has all the canonical features (polyadenylation signal, intron splicing boundaries) of genes isolated from aerobic filamentous fungi. Only one enolase gene could be detected in N. frontalis genomic DNA by Southern analysis with a homologous probe. RNA analysis detected a single enolase transcript of about 16 kb. When mycelium was grown on glucose, levels of enolase mRNA were markedly increased by comparison with enolase mRNA levels in mycelium grown on cellulose, suggesting that expression of the N. frontalis enolase gene was transcriptionally regulated by the carbon source.
机译:从厌氧真菌Neocallimastix Frontalis的基因组DNA文库中分离出含有推定的烯醇酶基因的DNA克隆。从序列比较推导出烯醇酶基因被大331bp内含子中断的序列比较。称为烯醇的烯醇酶基因具有1308bp的ORF,并编码预测的436个氨基酸蛋白。推导的氨基酸序列显示出高度的身份(715-71%)与酵母酿酒酵母酿酒酵母和念珠菌念珠菌的烯醇酶的高度(715-71%)。烯醇酶编码序列(438mol%)的G + C含量显着高于中间序列(142mol%)或5'和3'非转化的侧面序列的G + C含量(152和47mol% , 分别)。对于酵母和丝状真菌的高表达基因已发现,N.Crontalis enolase基因的密码子使用非常偏向。该基因具有从有氧丝状真菌中分离的基因的所有规范特征(聚腺苷酸化信号,内含子剪接边界)。通过用同源探针通过Southern分析,南部分析可以在N.Rentralis基因组DNA中检测一个烯醇酶基因。 RNA分析检测到约16kb的单一烯醇酶转录物。当菌丝体生长在葡萄糖上时,通过与在纤维素上生长的菌丝体中的菌丝体的烯醇酶mRNA水平相比,烯醇酶mRNA的水平显着增加,表明N.Crontalis烯醇酶基因的表达被碳源转录调节。

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