首页> 美国卫生研究院文献>Biochemical Journal >GTP cyclohydrolase I mRNA: novel splice variants in the slime mould Physarum polycephalum and in human monocytes (THP-1) indicate conservation of mRNA processing.
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GTP cyclohydrolase I mRNA: novel splice variants in the slime mould Physarum polycephalum and in human monocytes (THP-1) indicate conservation of mRNA processing.

机译:GTP环水解酶I mRNA:煤泥霉菌和人单核细胞(THP-1)中的新型剪接变体表明mRNA加工的保守性。

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摘要

GTP cyclohydrolase I (EC 3.5.4.16) is the first enzyme in the biosynthesis of tetrahydrobiopterin [(6R)-5,6,7,8-tetrahydro-L-biopterin, H(4)-biopterin] in mammals and of folic acid in bacteria. Here we have characterized the GTP cyclohydrolase I gene structure and two mRNA species from Physarum polycephalum, an acellular slime mould that synthesizes H(4)-biopterin and metabolites of the folic acid biosynthetic pathway. Its GTP cyclohydrolase I gene consists of seven exons, and the two GTP cyclohydrolase I cDNA species isolated from Physarum encode for proteins with 228 (25.7 kDa) and 195 (22.1 kDa) amino acids. Furthermore, we identified two previously undescribed mRNA species in interferon-gamma-treated human myelomonocytoma cells (THP-1) in addition to the cDNA coding for the fully functional 250-residue (27.9 kDa) protein, which is identical with that in human phaeochromocytoma cells. One of the new splice variants codes for a 233-residue (25.7 kDa) protein, whereas the other codes for the full-length protein but is alternatively spliced within the 3'-untranslated region. In heterologous expression, the shorter proteins of Physarum as well as of THP-1 cells identified here are degraded by proteolysis. Accordingly, only the 27.9 kDa protein was detectable in Western blots from THP-1 cell extracts. Quantification of GTP cyclohydrolase I mRNA species in different human cell types with and without cytokine treatment showed that in addition to the correct mRNA the two splice variants isolated here, as well as the two splice variants known from human liver, are strongly induced by cytokines in cell types with inducible GTP cyclohydrolase I (THP-1, dermal fibroblasts), but not in cell types with constitutive GTP cyclohydrolase I expression (SK-N-SH, Hep-G2). As in human liver, splicing of the new mRNA variant found in THP-1 cells occurs at the boundary of exons 5 and 6. Strikingly, the 195-residue protein from Physarum is alternatively spliced at a homologous position, i.e. at the boundary of exons 6 and 7. Thus alternative splicing of GTP cyclohydrolase I at this position occurs in two species highly distant from each other in terms of evolution. It remains to be seen whether variant proteins encoded by alternatively spliced GTP cyclohydrolase I mRNA transcripts do occur in vivo and whether they participate in regulation of enzyme activity.
机译:GTP环水解酶I(EC 3.5.4.16)是哺乳动物中四氢生物蝶呤[(6R)-5,6,7,8-四氢-L-生物蝶呤,H(4)-生物蝶呤]和叶酸生物合成中的第一种酶。在细菌中。在这里,我们已经表征了GTP环水解酶I基因结构和Physarum polycephalum的两个mRNA种类,Physarum polycephalum是一种脱细胞粘液霉菌,可以合成H(4)-biopterin和叶酸生物合成途径的代谢产物。它的GTP环水解酶I基因由七个外显子组成,从Physarum分离的两个GTP环水解酶I cDNA物种编码具有228(25.7 kDa)和195(22.1 kDa)氨基酸的蛋白质。此外,我们在干扰素-γ-处理的人类骨髓单核细胞瘤细胞(THP-1)中鉴定了两个先前未描述的mRNA物种,除了编码可完全起作用的250残基(27.9 kDa)蛋白的cDNA外,它与人类吞噬细胞瘤中的相同细胞。一个新的剪接变体编码一个233个残基(25.7 kDa)的蛋白质,而另一个剪接变体编码一个全长的蛋白质,但可以选择性地剪接在3'非翻译区内。在异源表达中,此处鉴​​定出的Physarum以及THP-1细胞的较短蛋白质通过蛋白水解而降解。因此,在THP-1细胞提取物的蛋白质印迹中仅可检测到27.9 kDa蛋白。在有或没有细胞因子处理的情况下,对不同人类细胞类型中GTP环水解酶I mRNA种类的定量显示,除了正确的mRNA外,此处分离的两个剪接变体以及人类肝脏已知的两个剪接变体均受细胞因子强烈诱导。具有诱导型GTP环水解酶I(THP-1,真皮成纤维细胞)的细胞类型,但不具有组成型GTP环水解酶I表达的细胞类型(SK-N-SH,Hep-G2)。就像在人类肝脏中一样,在THP-1细胞中发现的新mRNA变异体的剪接发生在外显子5和6的边界处。引人注目的是,来自Physarum的195个残基蛋白被剪接在同源位置,即在外显子的边界处参见图6和7。因此,在进化上彼此远离的两个物种中,在该位置的GTP环水解酶I的选择性剪接发生。由交替剪接的GTP环水解酶I mRNA转录物编码的变体蛋白是否确实在体内发生以及它们是否参与酶活性的调节尚待观察。

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