Waterham H R, Keizer-Gunnink I, Goodman J M, Harder W, Veenhuis M
Department of Microbiology, University of Groningen, Haren, The Netherlands.
J Bacteriol. 1992 Jun;174(12):4057-63. doi: 10.1128/jb.174.12.4057-4063.1992.
We have studied the development and metabolic significance of peroxisomes in the yeast Candida boidinii following adaptation of the organism to cultivation conditions which require the simultaneous presence and activity of two independent peroxisome-mediated pathways for growth. After the addition of methanol to oleic acid-grown cells at late exponentional growth, a number of new small peroxisomes developed which, apart from the presence of beta-oxidation enzymes, were characterized by the presence of enzymes involved in methanol metabolism (alcohol oxidase and dihydroxyacetone synthase). The latter proteins, however, were absent in the larger organelles which were originally present in the oleic acid-grown cells prior to the addition of methanol and which contained only enzymes of the beta-oxidation pathway. Subsequent experiments on cells from continuous cultures grown on a mixture of oleic acid and methanol at steady-state conditions revealed that both the enzymes of the beta-oxidation pathway and those involved in methanol metabolism were found in one and the same compartment. Thus, under these conditions the cells contained peroxisomes which were concurrently involved in the metabolism of two different carbon sources simultaneously used for growth. Our results indicated that the heterogeneity in the peroxisomal population of a single cell, observed in the transient state following the addition of methanol, is only temporary and due to heterogeneity among these organelles with respect to their capacity to incorporate newly synthesized matrix proteins.
我们研究了博伊丁假丝酵母(Candida boidinii)中过氧化物酶体的发育及其代谢意义,该酵母需适应同时存在两条独立的过氧化物酶体介导的生长途径并使其发挥作用的培养条件。在指数生长后期向以油酸培养的细胞中添加甲醇后,产生了许多新的小过氧化物酶体,除了含有β-氧化酶外,其特征还在于存在参与甲醇代谢的酶(醇氧化酶和二羟基丙酮合酶)。然而,在添加甲醇之前最初存在于以油酸培养的细胞中的较大细胞器中不存在后一种蛋白质,这些较大细胞器仅含有β-氧化途径的酶。随后对在稳态条件下以油酸和甲醇混合物进行连续培养的细胞进行的实验表明,β-氧化途径的酶和参与甲醇代谢的酶存在于同一个区室中。因此,在这些条件下,细胞含有同时参与两种不同碳源代谢的过氧化物酶体,这两种碳源同时用于生长。我们的结果表明,在添加甲醇后的过渡状态下观察到的单个细胞过氧化物酶体群体的异质性只是暂时的,并且是由于这些细胞器在整合新合成的基质蛋白的能力方面存在异质性。