Quellhorst G J, Hall C W, Robbins A R, Krag S S
Department of Biochemistry, The Johns Hopkins University, School of Hygiene and Public Health, Baltimore, Maryland 21205, USA.
Arch Biochem Biophys. 1997 Jul 1;343(1):19-26. doi: 10.1006/abbi.1997.0141.
CHB11-1-3 is a glycosylation mutant of Chinese hamster ovary (CHO) cells, isolated by screening mutagenized cells for those with decreased intracellular lysosomal enzyme activity [C. W. Hall et al. (1986) Mol. Cell. Biochem. 72, 35-45]. CHB11-1-3 synthesizes the lipid polyprenol, the metabolic precursor of dolichol, rather than dolichol, indicating a defect in polyprenol reductase. This defect was demonstrated previously in Lec9 CHO mutants, and cell fusion experiments confirmed that CHB11-1-3 is a member of this complementation group. A revertant of CHB11-1-3, CHBREV, isolated for its ability to grow at 39 degrees C, synthesizes dolichol at near-normal levels. CHBREV is probably a second-site revertant, because it synthesizes three to four times as much polyprenol as CHB11-1-3 and exhibits a similar elevation in the specific activity of cis-prenyl transferase. This higher activity appears to reflect an increase in enzyme molecules rather than the presence of an activator or absence of an inhibitor. These results suggest that CHB11-1-3 is a "K(m)" mutant, because synthesis of higher amounts of the substrate of polyprenol reductase obviates the defect.
CHB11 - 1 - 3是中国仓鼠卵巢(CHO)细胞的一种糖基化突变体,它是通过筛选诱变细胞中细胞内溶酶体酶活性降低的细胞而分离得到的[C. W. 霍尔等人(1986年),《分子与细胞生物化学》第72卷,第35 - 45页]。CHB11 - 1 - 3合成脂质聚戊烯醇,即多萜醇的代谢前体,而非多萜醇,这表明聚戊烯醇还原酶存在缺陷。此前在Lec9 CHO突变体中已证实存在这种缺陷,细胞融合实验证实CHB11 - 1 - 3是该互补群的成员之一。CHB11 - 1 - 3的一个回复突变体CHBREV,因其在39摄氏度下生长的能力而被分离出来,它合成多萜醇的水平接近正常。CHBREV可能是一个第二位点回复突变体,因为它合成的聚戊烯醇是CHB11 - 1 - 3的三到四倍,并且顺式异戊烯基转移酶的比活性也有类似升高。这种较高的活性似乎反映的是酶分子数量的增加,而非存在激活剂或不存在抑制剂。这些结果表明CHB11 - 1 - 3是一个“米氏常数(Km)”突变体,因为合成更多量的聚戊烯醇还原酶底物消除了该缺陷。