Sacksteder K A, Jones J M, South S T, Li X, Liu Y, Gould S J
Department of Biological Chemistry, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
J Cell Biol. 2000 Mar 6;148(5):931-44. doi: 10.1083/jcb.148.5.931.
Peroxisomes are components of virtually all eukaryotic cells. While much is known about peroxisomal matrix protein import, our understanding of how peroxisomal membrane proteins (PMPs) are targeted and inserted into the peroxisome membrane is extremely limited. Here, we show that PEX19 binds a broad spectrum of PMPs, displays saturable PMP binding, and interacts with regions of PMPs required for their targeting to peroxisomes. Furthermore, mislocalization of PEX19 to the nucleus leads to nuclear accumulation of newly synthesized PMPs. At steady state, PEX19 is bimodally distributed between the cytoplasm and peroxisome, with most of the protein in the cytoplasm. We propose that PEX19 may bind newly synthesized PMPs and facilitate their insertion into the peroxisome membrane. This hypothesis is supported by the observation that the loss of PEX19 results in degradation of PMPs and/or mislocalization of PMPs to the mitochondrion.
过氧化物酶体几乎是所有真核细胞的组成部分。虽然我们对过氧化物酶体基质蛋白的导入了解很多,但我们对过氧化物酶体膜蛋白(PMPs)如何靶向并插入过氧化物酶体膜的理解极其有限。在这里,我们表明PEX19结合多种PMPs,表现出可饱和的PMP结合,并与PMPs靶向过氧化物酶体所需的区域相互作用。此外,PEX19错误定位到细胞核会导致新合成的PMPs在细胞核中积累。在稳态下,PEX19在细胞质和过氧化物酶体之间呈双峰分布,大部分蛋白质存在于细胞质中。我们提出,PEX19可能结合新合成的PMPs并促进它们插入过氧化物酶体膜。这一假设得到了以下观察结果的支持:PEX19的缺失会导致PMPs的降解和/或PMPs错误定位到线粒体。