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维生素K2生物合成酶UBIAD1的功能特性

Functional characterization of the vitamin K2 biosynthetic enzyme UBIAD1.

作者信息

Hirota Yoshihisa, Nakagawa Kimie, Sawada Natsumi, Okuda Naoko, Suhara Yoshitomo, Uchino Yuri, Kimoto Takashi, Funahashi Nobuaki, Kamao Maya, Tsugawa Naoko, Okano Toshio

机构信息

Department of Hygienic Sciences, Kobe Pharmaceutical University, Kobe, Japan; Faculty of Pharmaceutical Sciences, Suzuka University of Medical Science, Suzuka, Japan.

Department of Hygienic Sciences, Kobe Pharmaceutical University, Kobe, Japan.

出版信息

PLoS One. 2015 Apr 15;10(4):e0125737. doi: 10.1371/journal.pone.0125737. eCollection 2015.

Abstract

UbiA prenyltransferase domain-containing protein 1 (UBIAD1) plays a significant role in vitamin K2 (MK-4) synthesis. We investigated the enzymological properties of UBIAD1 using microsomal fractions from Sf9 cells expressing UBIAD1 by analysing MK-4 biosynthetic activity. With regard to UBIAD1 enzyme reaction conditions, highest MK-4 synthetic activity was demonstrated under basic conditions at a pH between 8.5 and 9.0, with a DTT ≥0.1 mM. In addition, we found that geranyl pyrophosphate and farnesyl pyrophosphate were also recognized as a side-chain source and served as a substrate for prenylation. Furthermore, lipophilic statins were found to directly inhibit the enzymatic activity of UBIAD1. We analysed the aminoacid sequences homologies across the menA and UbiA families to identify conserved structural features of UBIAD1 proteins and focused on four highly conserved domains. We prepared protein mutants deficient in the four conserved domains to evaluate enzyme activity. Because no enzyme activity was detected in the mutants deficient in the UBIAD1 conserved domains, these four domains were considered to play an essential role in enzymatic activity. We also measured enzyme activities using point mutants of the highly conserved aminoacids in these domains to elucidate their respective functions. We found that the conserved domain I is a substrate recognition site that undergoes a structural change after substrate binding. The conserved domain II is a redox domain site containing a CxxC motif. The conserved domain III is a hinge region important as a catalytic site for the UBIAD1 enzyme. The conserved domain IV is a binding site for Mg2+/isoprenyl side-chain. In this study, we provide a molecular mapping of the enzymological properties of UBIAD1.

摘要

含泛醌A异戊烯基转移酶结构域蛋白1(UBIAD1)在维生素K2(MK-4)合成中起重要作用。我们通过分析MK-4生物合成活性,利用表达UBIAD1的Sf9细胞微粒体组分研究了UBIAD1的酶学性质。关于UBIAD1酶反应条件,在pH 8.5至9.0的碱性条件下,DTT≥0.1 mM时显示出最高的MK-4合成活性。此外,我们发现香叶基焦磷酸和法尼基焦磷酸也被识别为侧链来源并作为异戊烯基化的底物。此外,发现亲脂性他汀类药物直接抑制UBIAD1的酶活性。我们分析了menA和UbiA家族的氨基酸序列同源性,以确定UBIAD1蛋白的保守结构特征,并聚焦于四个高度保守的结构域。我们制备了缺乏这四个保守结构域的蛋白质突变体以评估酶活性。由于在缺乏UBIAD1保守结构域的突变体中未检测到酶活性,因此认为这四个结构域在酶活性中起重要作用。我们还使用这些结构域中高度保守氨基酸的点突变体测量酶活性,以阐明它们各自的功能。我们发现保守结构域I是底物识别位点,在底物结合后会发生结构变化。保守结构域II是一个含有CxxC基序的氧化还原结构域位点。保守结构域III是作为UBIAD1酶催化位点的重要铰链区。保守结构域IV是Mg2+/异戊烯基侧链的结合位点。在本研究中,我们提供了UBIAD1酶学性质的分子图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5365/4398444/632ac0c7e46f/pone.0125737.g001.jpg

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