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PEX1 AAA-ATP酶N端结构域的结构。一个假定的衔接蛋白结合结构域的特征分析。

Structure of the N-terminal domain of PEX1 AAA-ATPase. Characterization of a putative adaptor-binding domain.

作者信息

Shiozawa Kumiko, Maita Nobuo, Tomii Kentaro, Seto Azusa, Goda Natsuko, Akiyama Yutaka, Shimizu Toshiyuki, Shirakawa Masahiro, Hiroaki Hidekazu

机构信息

Graduate School of Integrated Science, Yokohama City University, 1-7-29 Suehiro, Tsurumi-ku, Yokohama, Kanagawa 230-0045, Japan.

出版信息

J Biol Chem. 2004 Nov 26;279(48):50060-8. doi: 10.1074/jbc.M407837200. Epub 2004 Aug 24.

DOI:10.1074/jbc.M407837200
PMID:15328346
Abstract

Peroxisomes are responsible for several pathways in primary metabolism, including beta-oxidation and lipid biosynthesis. PEX1 and PEX6 are hexameric AAA-type ATPases, both of which are indispensable in targeting over 50 peroxisomal resident proteins from the cytosol to the peroxisomes. Although the tandem AAA-ATPase domains in the central region of PEX1 and PEX6 are highly similar, the N-terminal sequences are unique. To better understand the distinct molecular function of these two proteins, we analyzed the unique N-terminal domain (NTD) of PEX1. Extensive computational analysis revealed weak similarity (<10% identity) of PEX1 NTD to the N-terminal domains of other membrane-related type II AAA-ATPases, such as VCP (p97) and NSF. We have determined the crystal structure of mouse PEX1 NTD at 2.05-A resolution, which clearly demonstrated that the domain belongs to the double-psi-barrel fold family found in the other AAA-ATPases. The N-domains of both VCP and NSF are structural neighbors of PEX1 NTD with a 2.7- and 2.1-A root mean square deviation of backbone atoms, respectively. Our findings suggest that the supradomain architecture, which is composed of a single N-terminal domain followed by tandem AAA domains, is a common feature of organellar membrane-associating AAA-ATPases. We propose that PEX1 functions as a protein unfoldase in peroxisomal biogenesis, using its N-terminal putative adaptor-binding domain.

摘要

过氧化物酶体负责初级代谢中的多种途径,包括β-氧化和脂质生物合成。PEX1和PEX6是六聚体AAA型ATP酶,它们在将超过50种过氧化物酶体驻留蛋白从细胞质靶向运输到过氧化物酶体的过程中都是不可或缺的。尽管PEX1和PEX6中央区域的串联AAA-ATP酶结构域高度相似,但它们的N端序列是独特的。为了更好地理解这两种蛋白质不同的分子功能,我们分析了PEX1独特的N端结构域(NTD)。广泛的计算分析表明,PEX1 NTD与其他膜相关的II型AAA-ATP酶(如VCP(p97)和NSF)的N端结构域有微弱的相似性(同一性<10%)。我们已经确定了小鼠PEX1 NTD的晶体结构,分辨率为2.05埃,这清楚地表明该结构域属于在其他AAA-ATP酶中发现的双ψ桶折叠家族。VCP和NSF的N结构域分别是PEX1 NTD的结构邻域,主链原子的均方根偏差分别为2.7埃和2.1埃。我们的研究结果表明,由单个N端结构域后跟串联AAA结构域组成的超结构域架构是细胞器膜相关AAA-ATP酶的共同特征。我们提出,PEX1在过氧化物酶体生物发生中作为一种蛋白质解折叠酶发挥作用,利用其N端假定的衔接子结合结构域。

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