Bowler L M, Shankaran R, Das I, Callahan J W
Research Institute, Hospital for Sick Children, Toronto, Ontario, Canada.
J Neurosci Res. 1990 Dec;27(4):505-11. doi: 10.1002/jnr.490270411.
Fibroblasts from 13 patients with the clinical phenotype of type IIS, Niemann-Pick disease were evaluated for their ability to incorporate oleic acid into cholesterol esters via an LDL responsive mechanism. Eight patients displayed a severe deficiency (less than 8% of normal) of cholesterol ester (CE) synthesis while a clinically less affected group displayed intermediate levels (36% of normal) of synthetic capacity with no detectable overlap between these groups and the control range. There was no deficiency in cholesterol ester production in fibroblasts from a patient with Zellweger's disease, a disorder characterized by altered peroxisomes and abnormal peroxisomal cholesterol metabolism, while in I-cell disease, characterized by a primary deficiency of a phosphotransferase which results in altered targeting of lysosomal hydrolases, it was reduced to 25% of the control level. To further implicate lysosomal proteins in the etiology of type IIS, Niemann-Pick disease we measured the effect of correction (conditioned) medium, and the lysosomotropic agent, NH4Cl on cholesterol ester synthesis in fibroblasts. NH4Cl completely inhibited incorporation into CE by normal cells, thus mimicking the CE defect in type IIS, Niemann-Pick cells. Conditioned medium had no effect on incorporation into CE synthesis but medium conditioned in the presence of 10 mM NH4Cl stimulated incorporation into CE in the control but not in Niemann-Pick cells. When Niemann-Pick cells cultured in the presence of NH4Cl were challenged to synthesize CE in the absence of NH4Cl, a significant enhancement of CE synthesis was noted in representative cell lines from both groups of patients.(ABSTRACT TRUNCATED AT 250 WORDS)
对13例具有II型尼曼-匹克病临床表型患者的成纤维细胞,评估其通过低密度脂蛋白反应机制将油酸掺入胆固醇酯的能力。8例患者胆固醇酯(CE)合成严重缺乏(低于正常水平的8%),而临床症状较轻的一组合成能力处于中等水平(正常水平的36%),这些组与对照范围之间无明显重叠。在过氧化物酶体异常和过氧化物酶体胆固醇代谢异常的齐-韦氏病患者的成纤维细胞中,胆固醇酯生成无缺乏,而在以磷酸转移酶原发性缺乏导致溶酶体水解酶靶向改变为特征的I-细胞病中,其降至对照水平的25%。为了进一步证明溶酶体蛋白与II型尼曼-匹克病的病因有关,我们测量了校正(条件)培养基和溶酶体促渗剂NH4Cl对成纤维细胞胆固醇酯合成的影响。NH4Cl完全抑制正常细胞掺入CE,从而模拟II型尼曼-匹克病细胞中的CE缺陷。条件培养基对掺入CE合成无影响,但在10 mM NH4Cl存在下的条件培养基刺激对照细胞而非尼曼-匹克病细胞掺入CE。当在NH4Cl存在下培养的尼曼-匹克病细胞在无NH4Cl的情况下被刺激合成CE时,两组患者的代表性细胞系中均观察到CE合成显著增强。(摘要截短于250字)