Danielsen E M
Department of Medical Biochemistry and Genetics, Panum Institute, University of Copenhagen, Denmark.
Biochemistry. 1994 Feb 15;33(6):1599-605. doi: 10.1021/bi00172a041.
The noncovalent, dimeric assembly of small intestinal brush border enzymes was studied by sedimentation analysis in density gradients of extracts of pulse-labeled pig jejunal mucosal explants. Like aminopeptidase N (EC 3.4.11.2), sucrase-isomaltase (EC 3.2.1.48-10), aminopeptidase A (EC 3.4.11.7), and dipeptidyl peptidase IV (EC 3.4.14.5) were all observed to dimerize predominantly prior to the Golgi-associated complex glycosylation, i.e., in the endoplasmic reticulum or in an intermediate compartment between this organelle and the Golgi complex. However, small amounts of monomeric complex-glycosylated forms, in particular of sucrase-isomaltase, were detectable. This indicates that homodimerization cannot be an absolute requirement for transport to, and through, the Golgi complex although our data suggest that dimeric assembly may increase the rate of intracellular transport. Culture at low temperature (20 degrees C) reduced the rate of, but did not prevent, dimerization. Maltase-glucoamylase (EC 3.2.1.20) only appeared as a dimer when extracted and analyzed under low salt conditions, suggesting a weak association between the two subunits. This finding is consistent with the electronmicroscopic appearance of the liposome-reconstituted enzyme [Norén et al. (1986) J. Biol. Chem. 261, 12306-12309], showing only the inner, membrane-anchored domains of the monomers to be in close contact with one another while the outer domains are far apart. In contrast to the other brush border enzymes studied, lactase-phlorizin hydrolase (EC 3.2.1.23-62) was found to occur predominantly as a monomer in its transient, high mannose-glycosylated state.(ABSTRACT TRUNCATED AT 250 WORDS)
通过对脉冲标记的猪空肠黏膜外植体提取物进行密度梯度沉降分析,研究了小肠刷状缘酶的非共价二聚体组装。与氨肽酶N(EC 3.4.11.2)一样,蔗糖酶-异麦芽糖酶(EC 3.2.1.48 - 10)、氨肽酶A(EC 3.4.11.7)和二肽基肽酶IV(EC 3.4.14.5)在高尔基体相关的复杂糖基化之前,即在粗面内质网或该细胞器与高尔基体复合体之间的中间区室中,都主要观察到二聚化。然而,可检测到少量单体形式的复杂糖基化产物,特别是蔗糖酶-异麦芽糖酶。这表明同型二聚化并非转运至高尔基体复合体并通过该复合体的绝对必要条件,尽管我们的数据表明二聚体组装可能会提高细胞内转运速率。在低温(20℃)下培养会降低二聚化速率,但不会阻止二聚化。麦芽糖酶-葡糖淀粉酶(EC 3.2.1.20)仅在低盐条件下提取和分析时才以二聚体形式出现,表明两个亚基之间存在弱关联。这一发现与脂质体重组酶的电子显微镜外观一致[诺伦等人(1986年)《生物化学杂志》261卷,12306 - 12309页],显示仅单体的内部膜锚定结构域彼此紧密接触,而外部结构域相距较远。与所研究的其他刷状缘酶不同,乳糖酶-根皮苷水解酶(EC 3.2.1.23 - 62)在其短暂的高甘露糖糖基化状态下主要以单体形式存在。(摘要截于250词)