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Newly identified Chinese hamster ovary cell mutants are defective in biogenesis of peroxisomal membrane vesicles (Peroxisomal ghosts), representing a novel complementation group in mammals

机译:新发现的中国仓鼠卵巢细胞突变体在过氧化物酶体膜囊泡(Peroxisomal ghosts)的生物发生中存在缺陷,代表哺乳动物中的一个新的互补基团

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摘要

We isolated peroxisome biogenesis-defective mutants from Chinese hamster ovary cells by the 9-(1'-pyrene)nonanol/ultraviolet (P9OH/UV) method. Seven cell mutants, ZP116, ZP119, ZP160, ZP161, ZP162, ZP164, and ZP165, of 11 P9OH/UV-resistant cell clones showed cytosolic localization of catalase, a peroxisomal matrix enzyme, apparently indicating a defect of peroxisome biogenesis. By transfection of PEX cDNAs and cell fusion analysis, mutants ZP119 and ZP165 were found to belong to a novel complementation group (CG), distinct from earlier mutants. CG analysis by cell fusion with fibroblasts from patients with peroxisome biogenesis disorders such as Zellweger syndrome indicated that ZP119 and ZP165 were in the same CG as the most recently identified human CG-J. The peroxisomal matrix proteins examined, including PTS1 proteins as well as a PTS2 protein, 3-ketoacyl-CoA thiolase, were also found in the cytosol in ZP119 and ZP165. Furthermore, these mutants showed typical peroxisome assembly-defective phenotype such as severe loss of resistance to 12-(1'-pyrene)dodecanoic acid/UV treatment. Most strikingly, peroxisomal reminiscent vesicular structures, so-called peroxisomal ghosts noted in all CGs of earlier Chinese hamster ovary cell mutants as well as in eight CGs of patients' fibroblasts, were not discernible in ZP119 and ZP165, despite normal synthesis of peroxisomal membrane proteins. Accordingly, ZP119 and ZP165 are the first cell mutants defective in import of both soluble and membrane proteins, representing the 14th peroxisome-deficient CG in mammals, including humans
机译:我们通过9-(1'-py)壬醇/紫外线(P9OH / UV)方法从中国仓鼠卵巢细胞中分离了过氧化物酶体生物发生缺陷型突变体。 11个耐P9OH / UV的细胞克隆中的七个细胞突变体ZP116,ZP119,ZP160,ZP161,ZP162,ZP164和ZP165显示过氧化氢酶(一种过氧化物酶体基质酶)的胞质定位,显然表明过氧化物酶体生物发生的缺陷。通过转染PEX cDNA和细胞融合分析,发现突变体ZP119和ZP165属于新的互补基团(CG),不同于早期的突变体。通过与过氧化物酶体生物发生障碍(例如Zellweger综合征)患者的成纤维细胞进行细胞融合进行的CG分析表明,ZP119和ZP165与最新鉴定的人CG-J处于同一CG中。在ZP119和ZP165的胞浆中也发现了所检查的过氧化物酶体基质蛋白,包括PTS1蛋白和PTS2蛋白3-酮酰基-CoA硫解酶。此外,这些突变体表现出典型的过氧化物酶体组装缺陷型,例如对12-(1'-re)十二烷酸/ UV处理的抗性严重丧失。最惊人的是,尽管过氧化物酶体膜蛋白正常合成,但在早期中国仓鼠卵巢细胞突变体的所有CG以及患者成纤维细胞的八个CG中都发现了过氧化物酶体的水泡结构,即所谓的过氧化物酶体鬼影。 。因此,ZP119和ZP165是第一个在可溶性和膜蛋白进口方面均存在缺陷的细胞突变体,代表了包括人类在内的哺乳动物中第14个过氧化物酶体缺乏CG

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