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黏脂贮积症成纤维细胞系中溶酶体酶的电泳异常

Electrophoretic abnormalities of lysosomal enzymes in mucolipidosis fibroblast lines.

作者信息

Champion M J, Shows T B

出版信息

Am J Hum Genet. 1977 Mar;29(2):149-63.

Abstract

Electrophoretic properties of eight lysosomal hydrolases and 36 nonlysosomal enzymes were investigated in cultured fibroblasts from children with the inherited storage disease mucolipidosis II (ML II); fibroblasts from a child with a related disorder, mucolipidosis III (ML III); and two obligate heterozygous cell lines from parents of a ML II child. Cell homogenates of ML II fibroblast lines showed altered mobilities for lysosomal beta-hexosaminidase, acid phosphatase2, and alpha-mannosidase and deficient activity for the esterase-A4 and lysosomal alpha-mannosidase-B electrophoretic phenotypes. Altered mobility was also detected for the nonlysosomal enzyme adenosine deaminase-d. Deficient activities of other lysosomal enzymes were observed as previously reported. In a single ML III fibroblast line, only beta-hexosaminidase showed an abnormal electrophoretic pattern suggesting a difference between these cells and ML II fibroblasts. Thirty-five nonlysosomal enzymes associated with other cellular organelles and metabolic pathways were electrophoretically normal in all mucolipidosis cell lines. Heterozygous ML II cells showed normal expression for all enzymes. Two major patterns of altered lysosomal enzymes and adenosine deaminase were demonstrated in ML II cell lines, suggesting that at least two genetic forms of this disorder may exist. Neuraminidase treatment of ML II homogenates converted altered forms of acid phosphatase2 and adenosine deaminase-d and in two ML II lines, recovered the previously undetected lysosomal alpha-mannosidase band. These results are consistent with the mucolipidosis defect(s) being associated with abnormal post-translatinal processing of multiple lysosomal enzymes and adenosine deaminase-d.

摘要

对患有遗传性贮积病黏脂贮积症II型(ML II)患儿的培养成纤维细胞、患有相关疾病黏脂贮积症III型(ML III)患儿的成纤维细胞以及来自一名ML II患儿父母的两个必然杂合细胞系中的8种溶酶体水解酶和36种非溶酶体酶的电泳特性进行了研究。ML II成纤维细胞系的细胞匀浆显示,溶酶体β-己糖胺酶、酸性磷酸酶2和α-甘露糖苷酶的迁移率发生改变,酯酶-A4和溶酶体α-甘露糖苷酶-B电泳表型的活性缺乏。非溶酶体酶腺苷脱氨酶-d的迁移率也发生了改变。如先前报道的那样,观察到其他溶酶体酶的活性缺乏。在单个ML III成纤维细胞系中,只有β-己糖胺酶显示出异常的电泳模式,表明这些细胞与ML II成纤维细胞之间存在差异。在所有黏脂贮积症细胞系中,与其他细胞器和代谢途径相关的35种非溶酶体酶的电泳结果正常。杂合ML II细胞中所有酶的表达均正常。在ML II细胞系中展示了溶酶体酶和腺苷脱氨酶改变的两种主要模式,表明该疾病可能至少存在两种遗传形式。用神经氨酸酶处理ML II匀浆可使酸性磷酸酶2和腺苷脱氨酶-d的改变形式发生转化,并且在两个ML II细胞系中,使先前未检测到的溶酶体α-甘露糖苷酶条带恢复。这些结果与黏脂贮积症缺陷与多种溶酶体酶和腺苷脱氨酶-d的异常翻译后加工有关一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48f3/1685256/4c966e46dac1/ajhg00206-0032-a.jpg

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