Hou Y, Vavougios G, Hinek A, Wu K K, Hechtman P, Kaplan F, Mahuran D J
Research Institute, Hospital for Sick Children, University of Toronto.
Am J Hum Genet. 1996 Jul;59(1):52-8.
Substitution mutations adversely affecting the alpha-subunit of beta-hexosaminidase A (alphabeta) (EC 3.2.1.52) result in Tay-Sachs disease. The majority affect the initial folding of the pro-alpha chain in the endoplasmic reticulum, resulting in its retention and degradation. A much less common occurrence is a mutation that specifically affects an "active-site" residue necessary for substrate binding and/or catalysis. In this case, hexosaminidase A is present in the lysosome, but it lacks all alpha-specific activity. This biochemical phenotype is referred to as the "B1-variant form" of Tay-Sachs disease. Kinetic analysis of suspected B1-variant mutations is complex because hexosaminidase A is heterodimeric and both subunits possess similar active sites. In this report, we examine a previously identified B1-variant mutation, alpha-Val192Leu. Chinese hamster ovary cells were permanently cotransfected with an alpha-cDNA-construct encoding the substitution and a mutant beta-cDNA (beta-Arg211Lys), encoding a beta-subunit that is inactive but normal in all other respects. We were surprised to find that the Val192Leu substitution, produced a pro-alpha chain that did not form alpha-beta dimers and was not transported to the lysosome. Finally, we reexamined the hexosaminidase activity and protein levels in the fibroblasts from the original patient. These data were also not consistent with the biochemical phenotype of the B1 variant of Tay-Sachs disease previously reported to be present. Thus, we conclude that the Val192Leu substitution does not specifically affect the alpha-active site.
影响β-己糖胺酶A(αβ)(EC 3.2.1.52)α亚基的替换突变会导致泰-萨克斯病。大多数突变影响内质网中前α链的初始折叠,导致其滞留和降解。一种不太常见的情况是,突变特异性地影响底物结合和/或催化所需的“活性位点”残基。在这种情况下,己糖胺酶A存在于溶酶体中,但缺乏所有α特异性活性。这种生化表型被称为泰-萨克斯病的“B1变异型”。对疑似B1变异型突变的动力学分析很复杂,因为己糖胺酶A是异二聚体,两个亚基都具有相似的活性位点。在本报告中,我们研究了一个先前鉴定的B1变异型突变,α-Val192Leu。将编码该替换的α-cDNA构建体与一个突变的β-cDNA(β-Arg211Lys)永久共转染到中国仓鼠卵巢细胞中,该β-cDNA编码一个在所有其他方面均无活性但正常的β亚基。我们惊讶地发现,Val192Leu替换产生了一条前α链,该链不形成α-β二聚体,也不被转运到溶酶体。最后,我们重新检查了来自原始患者的成纤维细胞中的己糖胺酶活性和蛋白质水平。这些数据也与先前报道存在的泰-萨克斯病B1变异型的生化表型不一致。因此,我们得出结论,Val192Leu替换不会特异性影响α活性位点。