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首页> 外文期刊>BMC Biochemistry >Molecular Characterization of Chinese Hamster Cells Mutants Affected in Adenosine Kinase and Showing Novel Genetic and Biochemical Characteristics
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Molecular Characterization of Chinese Hamster Cells Mutants Affected in Adenosine Kinase and Showing Novel Genetic and Biochemical Characteristics

机译:腺苷激酶影响的中国仓鼠细胞突变体的分子表征并显示新的遗传和生化特征

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摘要

Two isoforms of the enzyme adenosine kinase (AdK), which differ at their N-terminal ends, are found in mammalian cells. However, there is no information available regarding the unique functional aspects or regulation of these isoforms. We show that the two AdK isoforms differ only in their first exons and the promoter regions; hence they arise via differential splicing of their first exons with the other exons common to both isoforms. The expression of these isoforms also varied greatly in different rat tissues and cell lines with some tissues expressing both isoforms and others expressing only one of the isoforms. To gain insights into cellular functions of these isoforms, mutants resistant to toxic adenosine analogs formycin A and tubercidin were selected from Chinese hamster (CH) cell lines expressing either one or both isoforms. The AdK activity in most of these mutants was reduced to 5% of wild-type cells and they also showed large differences in the expression of the two isoforms. Thus, the genetic alterations in these mutants likely affected both regulatory and structural regions of AdK. We have characterized the molecular alterations in a number of these mutants. One of these mutants lacking AdK activity was affected in the conserved NxxE motif thereby providing evidence that this motif involved in the binding of Mg2+ and phosphate ions is essential for AdK function. Another mutant, FomR-4, exhibiting increased resistance to only C-adenosine analogs and whose resistance was expressed dominantly in cell-hybrids contained a single mutation leading to Ser191Phe alteration in AdK. We demonstrate that this mutation in AdK is sufficient to confer the novel genetic and biochemical characteristics of this mutant. The unusual genetic and biochemical characteristics of the FomR-4 mutant suggest that AdK in this mutant might be complexed with the enzyme AMP-kinase. Several other AdK mutants were altered in surface residues that likely affect its binding to the adenosine analogs and its interaction with other cellular proteins. These AdK mutants provide important insights as well as novel tools for understanding the cellular functions of the two isoforms and their regulation in mammalian cells.
机译:在哺乳动物细胞中发现了两种腺苷酸激酶(AdK)的同工型,它们的N末端不同。但是,没有关于这些同工型的独特功能方面或调节的信息。我们显示这两个AdK亚型仅在其第一个外显子和启动子区域不同;因此,它们是通过其第一个外显子与两个同工型共有的其他外显子的差异剪接而产生的。这些同工型的表达在不同的大鼠组织和细胞系中也有很大差异,有些组织既表达同工型,又表达仅一种同工型。为了深入了解这些同工型的细胞功能,从表达一种或两种同工型的中国仓鼠(CH)细胞系中选择了对毒性腺苷甲霉素A和结核菌素具有抗性的突变体。在大多数这些突变体中,AdK活性降低至野生型细胞的<5%,并且它们在两种同工型的表达中也显示出很大差异。因此,这些突变体的遗传改变可能会影响AdK的调节区和结构区。我们已经表征了许多这些突变体中的分子改变。这些缺乏AdK活性的突变体之一受到保守的NxxE基序的影响,从而提供证据表明,参与Mg2 +和磷酸根离子结合的该基序对于AdK功能至关重要。另一个突变体FomR-4仅对C-腺苷类似物显示出增加的抗性,并且其抗性主要在细胞杂交物中表达,包含一个导致AdK中Ser191Phe改变的突变。我们证明,AdK中的这种突变足以赋予该突变体新的遗传和生化特征。 FomR-4突变体的异常遗传和生化特征表明,该突变体中的AdK可能与AMP激酶复合。其他几个AdK突变体的表面残基发生了变化,可能会影响其与腺苷类似物的结合以及与其他细胞蛋白的相互作用。这些AdK突变体为了解这两种同工型的细胞功能及其在哺乳动物细胞中的调控提供了重要的见识以及新颖的工具。

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