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拟南芥中的双重选择性硝化作用:几乎仅对放氧增强蛋白(PsbO)和放氧复合体蛋白(PsbP)进行硝化,以及对包括过氧化物酶II E在内的四种非光系统II蛋白进行高度敏感的硝化。

Dual selective nitration in Arabidopsis: Almost exclusive nitration of PsbO and PsbP, and highly susceptible nitration of four non-PSII proteins, including peroxiredoxin II E.

作者信息

Takahashi Misa, Shigeto Jun, Sakamoto Atsushi, Izumi Shunsuke, Asada Kozi, Morikawa Hiromichi

机构信息

Department of Mathematical and Life Sciences, Graduate School of Science, Hiroshima University, Hiroshima, Japan.

Faculty of Engineering, Fukuyama University, Fukuyama, Japan.

出版信息

Electrophoresis. 2015 Oct;36(20):2569-78. doi: 10.1002/elps.201500145. Epub 2015 Aug 26.

Abstract

Protein tyrosine nitration is a selective process, as revealed in studies of animals. However, evidence for selective protein nitration in plants is scarce. In this study, Arabidopsis plants were exposed to air with or without nitrogen dioxide at 40 ppm for 8 h in light. Proteins extracted from whole leaves or isolated chloroplasts were subjected to 2D PAGE followed by SYPRO Ruby staining and immunoblotting using an anti-3-nitrotyrosine antibody. We determined the relative intensity of a spot on an immunoblot (designated RISI), and relative intensity of the corresponding spot on SYPRO Ruby gel (designated RISS). Proteins that exhibited a high RISI value and/or a high RISI/RISS ratio were considered selectively nitrated. In whole leaf proteins from exposed plants, all immunopositive spots were identified as PsbO1, PsbO2 or PsbP1 by PMF. Thus, nitration was exclusive to PsbO and PsbP, extrinsic proteins of photosystem II (PSII). Their RISI/RISS ratio was ≤1.5. Non-exposed plants showed very faint nitration. In purified chloroplast proteins, PsbO and PsbP accounted for >80% of the total RISI values, while four non-PSII proteins, including peroxiredoxin II E, exhibited high RISI/RISS ratios (2.5∼6.6). Tyr(9) of PsbO1 was identified as a nitration site. Thus, nitration is selective for two PSII and four non-PSII proteins in Arabidopsis.

摘要

蛋白质酪氨酸硝化是一个选择性过程,这在动物研究中已得到证实。然而,植物中选择性蛋白质硝化的证据却很少。在本研究中,拟南芥植株在光照条件下暴露于含有或不含40 ppm二氧化氮的空气中8小时。从全叶或分离的叶绿体中提取的蛋白质进行二维聚丙烯酰胺凝胶电泳(2D PAGE),随后用SYPRO Ruby染色,并使用抗3-硝基酪氨酸抗体进行免疫印迹分析。我们测定了免疫印迹上一个斑点的相对强度(称为RISI)以及SYPRO Ruby凝胶上相应斑点的相对强度(称为RISS)。表现出高RISI值和/或高RISI/RISS比值的蛋白质被认为是被选择性硝化的。在暴露植株的全叶蛋白质中,通过基质辅助激光解吸电离飞行时间质谱(PMF)鉴定出所有免疫阳性斑点均为PsbO1、PsbO2或PsbP1。因此,硝化作用仅发生在光系统II(PSII)的外在蛋白PsbO和PsbP上。它们的RISI/RISS比值≤1.5。未暴露的植株显示出非常微弱的硝化作用。在纯化的叶绿体蛋白质中,PsbO和PsbP占总RISI值的80%以上,而包括过氧化物酶II E在内的四种非PSII蛋白质表现出高RISI/RISS比值(2.5至6.6)。PsbO1的Tyr(9)被鉴定为硝化位点。因此,在拟南芥中,硝化作用对两种PSII蛋白和四种非PSII蛋白具有选择性。

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