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首页> 外文期刊>Human Molecular Genetics >Mutations of ATIC and ADSL affect purinosome assembly in cultured skin fibroblasts from patients with AICA-ribosiduria and ADSL deficiency
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Mutations of ATIC and ADSL affect purinosome assembly in cultured skin fibroblasts from patients with AICA-ribosiduria and ADSL deficiency

机译:ATIC和ADSL的突变影响AICA核糖尿症和ADSL缺乏症患者培养的皮肤成纤维细胞中嘌呤体的组装

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The purinosome is a multienzyme complex composed by the enzymes active in de novo purine synthesis (DNPS) that cells transiently assemble in their cytosol upon depletion or increased demand of purines. The process of purinosome formation has thus far been demonstrated and studied only in human epithelial cervical cancer cells (HeLa) and human liver carcinoma cells (C3A) transiently expressing recombinant fluorescently labeled DNPS proteins. Using parallel immunolabeling of various DNPS enzymes and confocal fluorescent microscopy, we proved purinosome assembly in HeLa, human hepatocellular liver carcinoma cell line (HepG2), sarcoma osteogenic cells (Saos-2), human embryonic kidney cells (HEK293), human skin fibroblasts (SF) and primary human keratinocytes (KC) cultured in purine-depleted media. Using the identical approach, we proved in cultured skin fibroblasts from patients with AICA-ribosiduria and ADSL deficiency that various mutations of ATIC and ADSL destabilize to various degrees of purinosome assembly and found that the ability to form purinosomes correlates with clinical phenotypes of individual ADSL patients. Our results thus shown that the assembly of functional purinosomes is fully dependent on the presence of structurally unaffected ATIC and ADSL complexes and presumably also on the presence of all the other DNPS proteins. The results also corroborate the hypothesis that the phenotypic severity of ADSL deficiency is mainly determined by structural stability and residual catalytic capacity of the corresponding mutant ADSL protein complexes, as this is prerequisite for the formation and stability of the purinosome and at least partial channeling of succinylaminoimidazolecarboxamide riboside-ADSL enzyme substrates-through the DNPS pathway.
机译:嘌呤体是一种多酶复合物,由在从头嘌呤合成(DNPS)中具有活性的酶组成,当嘌呤耗尽或需求增加时,细胞会在其胞质溶胶中瞬时组装。迄今为止,仅在瞬时表达重组荧光标记的DNPS蛋白的人上皮宫颈癌细胞(HeLa)和人肝癌细胞(C3A)中证明和研究了嘌呤体形成过程。使用各种DNPS酶的平行免疫标记和共聚焦荧光显微镜检查,我们证明了HeLa,人肝细胞肝癌细胞系(HepG2),肉瘤成骨细胞(Saos-2),人胚肾细胞(HEK293),人皮肤成纤维细胞中的嘌呤体组装( SF)和原代人角质形成细胞(KC)培养在嘌呤耗尽的培养基中。使用相同的方法,我们在来自AICA-核糖尿症和ADSL缺乏症患者的培养的皮肤成纤维细胞中证明了ATIC和ADSL的各种突变会破坏嘌呤体组装的各种程度,并发现形成嘌呤体的能力与单个ADSL患者的临床表型相关。因此,我们的结果表明功能性嘌呤体的组装完全取决于结构上不受影响的ATIC和ADSL复合物的存在,并且还取决于所有其他DNPS蛋白的存在。该结果还证实了以下假设:ADSL缺乏症的表型严重性主要由相应的突变ADSL蛋白复合物的结构稳定性和残余催化能力决定,因为这是嘌呤体的形成和稳定性以及琥珀酰氨基咪唑碳酰胺至少部分通道化的前提。核糖苷-ADSL酶底物-通过DNPS途径。

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