Glover J R, Andrews D W, Rachubinski R A
Department of Biochemistry, McMaster University, Hamilton, Ontario, Canada.
Proc Natl Acad Sci U S A. 1994 Oct 25;91(22):10541-5. doi: 10.1073/pnas.91.22.10541.
The active conformation of native peroxisomal 3-ketoacyl-CoA thiolases (EC 2.3.1.16) is homodimeric. We have previously shown that a truncated Saccharomyces cerevisiae thiolase lacking its first 16 N-terminal amino acids fails to be translocated into peroxisomes but assembles into an enzymatically active form in the cytoplasm of a strain with a disrupted nuclear thiolase gene. We now report that when truncated thiolase is cosynthesized with full-length thiolase, approximately 50% of truncated thiolase cofractionates with the full-length thiolase to fractions enriched for peroxisomes and is translocated into peroxisomes as shown by its protection from the action of external proteases. We constructed an immunologically distinct cytosolic variant of thiolase by adding an influenza hemagglutinin epitope tag to the N terminus of the truncated thiolase. In a strain simultaneously expressing the full-length, truncated, and epitope-tagged truncated thiolases, we demonstrated that normally untargeted thiolase subunits are efficiently translocated into peroxisomes by dimerization with full-length thiolase subunits. Even though truncated and epitope-tagged truncated thiolase subunits are translocated into peroxisomes in this strain, only the full-length thiolase subunit can be coimmunoprecipitated with the epitope-tagged truncated thiolase subunit from the peroxisomal matrix. This observation suggests that interactions between thiolase subunits are not disrupted during translocation.
天然过氧化物酶体3-酮酰基辅酶A硫解酶(EC 2.3.1.16)的活性构象是同型二聚体。我们之前已经表明,截短的酿酒酵母硫解酶缺失其前16个N端氨基酸,无法转运到过氧化物酶体中,但在核硫解酶基因被破坏的菌株的细胞质中组装成酶活性形式。我们现在报告,当截短的硫解酶与全长硫解酶共合成时,约50%的截短硫解酶与全长硫解酶一起分离到富含过氧化物酶体的组分中,并如免受外部蛋白酶作用所示,转运到过氧化物酶体中。我们通过在截短硫解酶的N端添加流感血凝素表位标签构建了一种免疫上不同的细胞质硫解酶变体。在同时表达全长、截短和带有表位标签的截短硫解酶的菌株中,我们证明,通常无靶向性的硫解酶亚基通过与全长硫解酶亚基二聚化而有效地转运到过氧化物酶体中。尽管截短的和带有表位标签的截短硫解酶亚基在该菌株中转运到过氧化物酶体中,但只有全长硫解酶亚基能与来自过氧化物酶体基质的带有表位标签的截短硫解酶亚基进行共免疫沉淀。这一观察结果表明,硫解酶亚基之间的相互作用在转运过程中未被破坏。