首页> 美国卫生研究院文献>Nucleic Acids Research >Transcriptionally active TFIIH of the early-diverged eukaryote Trypanosoma brucei harbors two novel core subunits but not a cyclin-activating kinase complex
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Transcriptionally active TFIIH of the early-diverged eukaryote Trypanosoma brucei harbors two novel core subunits but not a cyclin-activating kinase complex

机译:早发真核锥虫布鲁氏菌的转录活性TFIIH具有两个新的核心亚基但没有细胞周期蛋白激活激酶复合物

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摘要

Trypanosoma brucei is a member of the early-diverged, protistan family Trypanosomatidae and a lethal parasite causing African Sleeping Sickness in humans. Recent studies revealed that T. brucei harbors extremely divergent orthologues of the general transcription factors TBP, TFIIA, TFIIB and TFIIH and showed that these factors are essential for initiating RNA polymerase II-mediated synthesis of spliced leader (SL) RNA, a trans splicing substrate and key molecule in trypanosome mRNA maturation. In yeast and metazoans, TFIIH is composed of a core of seven conserved subunits and the ternary cyclin-activating kinase (CAK) complex. Conversely, only four TFIIH subunits have been identified in T. brucei. Here, we characterize the first protistan TFIIH which was purified in its transcriptionally active form from T. brucei extracts. The complex consisted of all seven core subunits but lacked the CAK sub-complex; instead it contained two trypanosomatid-specific subunits, which were indispensable for parasite viability and SL RNA gene transcription. These findings were corroborated by comparing the molecular structures of trypanosome and human TFIIH. While the ring-shaped core domain was surprisingly congruent between the two structures, trypanosome TFIIH lacked the knob-like CAK moiety and exhibited extra densities on either side of the ring, presumably due to the specific subunits.
机译:布鲁氏锥虫(Trypanosoma brucei)是早分裂的Protstan家族锥虫科(Trypanosomatidae)的成员,是一种致命的寄生虫,可导致人类非洲昏睡病。最近的研究表明,布鲁氏梭菌含有通用转录因子TBP,TFIAA,TFIIB和TFIIH的高度不同的直向同源物,并表明这些因子对于启动RNA聚合酶II介导的剪接前导(SL)RNA(反式剪接底物)的合成至关重要锥虫mRNA成熟的关键分子。在酵母和后生动物中,TFIIH由七个保守亚基的核心和三联细胞周期蛋白激活激酶(CAK)复合体组成。相反,在布鲁氏菌中仅鉴定了四个TFIIH亚基。在这里,我们表征了第一个Protistan TFIIH,它从杜氏布鲁氏菌提取物中以其转录活性形式纯化。该复合物由所有七个核心亚基组成,但缺少CAK子复合物。相反,它包含两个锥虫特定的亚基,这对于寄生虫生存力和SL RNA基因转录是必不可少的。通过比较锥虫体和人TFIIH的分子结构,证实了这些发现。虽然环形结构域在两个结构之间令人惊讶地完全一致,但是锥虫TFIIH缺少结状CAK部分,并且在环的两侧均表现出额外的密度,这可能是由于特定的亚基所致。

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