Sakai Y, Saiganji A, Yurimoto H, Takabe K, Saiki H, Kato N
Department of Agricultural Chemistry, Faculty of Agriculture, Kyoto University, Japan.
J Cell Biol. 1996 Jul;134(1):37-51. doi: 10.1083/jcb.134.1.37.
Candida boidinii Pmp47, an integral peroxisomal membrane protein, belongs to a family of mitochondrial solute transporters (e.g., ATP/ADP exchanger), and is the only known peroxisomal member of this family. However, its physiological and biochemical functions have been unrevealed because of the difficulties in the molecular genetics of C. boidinii. In this study, we first isolated the PMP47 gene, which was the single gene encoding for Pmp47 in a gene-engineerable strain S2 of C. boidinii. Sequence analysis revealed that it was very similar to PMP47A and PMP47B genes from a polyploidal C. Boidinii strain (ATCC32195). Next, the PMP47 gene was disrupted and the disruption strain (pmp47delta) was analyzed. Depletion of PMP47 from strain S2 resulted in a retarded growth on oleate and a complete loss of growth on methanol. Both growth substrates require peroxisomal metabolism. EM observations revealed the presence of peroxisomes in methanol- and oleate-induced cells of pmp47delta, but in reduced numbers, and the presence of material of high electron density in the cytoplasm in both cases. Methanol-induced cells of pmp47delta were investigated in detail. The activity of one of the methanol-induced peroxisome matrix enzymes, dihydroxyacetone synthase (DHAS), was not detected in pmp47delta. Further biochemical and immunocytochemical experiments revealed that the DHAS protein aggregated in the cytoplasm as an inclusion body, while two other peroxisome matrix enzymes, alcohol oxidase (AOD) and catalase, were active and found in peroxisomes. Two peroxisome-deficient mutants, strains M6 and M13 (described in previous studies), retained DHAS activity although it was mislocalized to the cytoplasm and the nucleus. We disrupted PMP47 in these peroxisome-deficient mutants. In both strains, M6-pmp47delta and M13-pmp47delta, DHAS was enzymatically active and was located in the cytoplasm and the nucleus. We suggest that an unknown small molecule, which PMP47 transports, is necessary for the folding or the translocation machinery of DHAS within peroxisomes. Pmp47 does not catalyze folding directly because active DHAS is observed in the M6-pmp47delta and M13-pmp47delta strains. Since both AOD and DHAS have the PTS1 motif sequences at their carboxyl terminal, our results first show that depletion of Pmp47 could dissect the peroxisomal import pathway (PTS1 pathway) of these proteins.
博伊丁假丝酵母Pmp47是一种过氧化物酶体膜整合蛋白,属于线粒体溶质转运蛋白家族(如ATP/ADP交换体),是该家族中唯一已知的过氧化物酶体成员。然而,由于博伊丁假丝酵母分子遗传学研究的困难,其生理和生化功能尚未明确。在本研究中,我们首先分离了PMP47基因,它是博伊丁假丝酵母可进行基因工程操作的菌株S2中编码Pmp47的唯一基因。序列分析表明,它与多倍体博伊丁假丝酵母菌株(ATCC32195)的PMP47A和PMP47B基因非常相似。接下来,对PMP47基因进行了破坏,并对破坏菌株(pmp47delta)进行了分析。从菌株S2中缺失PMP47导致其在油酸上生长迟缓,在甲醇上完全丧失生长能力。这两种生长底物都需要过氧化物酶体代谢。电子显微镜观察显示,在pmp47delta的甲醇和油酸诱导细胞中存在过氧化物酶体,但数量减少,并且在这两种情况下细胞质中都存在高电子密度物质。对pmp47delta的甲醇诱导细胞进行了详细研究。在pmp47delta中未检测到一种甲醇诱导的过氧化物酶体基质酶——二羟基丙酮合酶(DHAS)的活性。进一步的生化和免疫细胞化学实验表明,DHAS蛋白在细胞质中聚集成包涵体,而另外两种过氧化物酶体基质酶——乙醇氧化酶(AOD)和过氧化氢酶具有活性,并存在于过氧化物酶体中。两个过氧化物酶体缺陷突变体,菌株M6和M13(在先前的研究中描述),尽管DHAS活性定位于细胞质和细胞核中,但仍保留DHAS活性。我们在这些过氧化物酶体缺陷突变体中破坏了PMP47。在M6 - pmp47delta和M13 - pmp47delta这两种菌株中,DHAS都具有酶活性,并且定位于细胞质和细胞核中。我们推测,PMP47转运一种未知的小分子,该小分子对于DHAS在过氧化物酶体内的折叠或转运机制是必需的。Pmp47并不直接催化折叠,因为在M6 - pmp47delta和M13 - pmp47delta菌株中观察到了有活性的DHAS。由于AOD和DHAS在其羧基末端都有PTS1基序序列,我们的结果首次表明,Pmp47的缺失可以剖析这些蛋白质的过氧化物酶体导入途径(PTS1途径)。