Wolf B, Rosenberg L E
J Clin Invest. 1978 Nov;62(5):931-6. doi: 10.1172/JCI109221.
We measured propionyl coenzyme A carboxylase (PCC) activity in extracts of skin fibroblasts and peripheral blood leukocytes from controls and obligate heterozygotes for PCC deficiency. 6 heterozygotes were from the pcc A complementation group; 12 were from the other major complementation group, designated pcc C. Mean PCC activity in fibroblast extracts from pcc A heterozygotes was 52% of that in controls, whereas mean PCC activity in pcc C heterozygotes was indistinguishable from that of controls. Similar results were obtained with extracts of peripheral blood leukocytes. In none of eight families (three pcc A and five pcc C) in which PCC activity was studied in both parents of an affected child were significant intrafamilial differences observed. The activities of two other mitochondrial enzymes (beta-methyl-crotonyl CoA carboxylase and glutamate dehydrogenase) were comparable in controls and both groups of heterozygotes. Whereas the data from pcc A heterozygotes are consistent with expected gene dosage effects, those from pcc C heterozygotes are not. Inasmuch as mammalian PCC is a large molecular weight tetramer, each protomer of which is probably composed of two nonidentical subunits, the latter results are most consistent with unbalanced rates of synthesis and(or) degradation of the two subunits in normal cells with compensatory balancing in pcc C heterozygotes.
我们测定了对照组以及丙酰辅酶A羧化酶(PCC)缺乏症的纯合子携带者的皮肤成纤维细胞和外周血白细胞提取物中的PCC活性。6名杂合子来自pcc A互补组;12名来自另一个主要互补组,即pcc C。pcc A杂合子的成纤维细胞提取物中的平均PCC活性为对照组的52%,而pcc C杂合子的平均PCC活性与对照组无差异。外周血白细胞提取物也得到了类似结果。在对患病儿童的双亲进行PCC活性研究的8个家族(3个pcc A家族和5个pcc C家族)中,均未观察到显著的家族内差异。另外两种线粒体酶(β-甲基巴豆酰辅酶A羧化酶和谷氨酸脱氢酶)在对照组和两组杂合子中的活性相当。虽然pcc A杂合子的数据与预期的基因剂量效应一致,但pcc C杂合子的数据并非如此。由于哺乳动物PCC是一种高分子量四聚体,其每个原体可能由两个不同的亚基组成,后一结果最符合正常细胞中两个亚基合成和(或)降解速率不平衡,而在pcc C杂合子中有代偿性平衡的情况。