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F-box蛋白AhSLF-S2与S-RNase在体内相互作用,在金鱼草的亲和授粉过程中,S-RNase可能会被泛素/26S蛋白酶体蛋白降解途径所抑制。

The F-box protein AhSLF-S2 physically interacts with S-RNases that may be inhibited by the ubiquitin/26S proteasome pathway of protein degradation during compatible pollination in Antirrhinum.

作者信息

Qiao Hong, Wang Hongyun, Zhao Lan, Zhou Junli, Huang Jian, Zhang Yansheng, Xue Yongbiao

机构信息

Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100080, China.

出版信息

Plant Cell. 2004 Mar;16(3):582-95. doi: 10.1105/tpc.017673. Epub 2004 Feb 18.

Abstract

Self-incompatibility S-locus-encoded F-box (SLF) proteins have been identified in Antirrhinum and several Prunus species. Although they appear to play an important role in self-incompatible reaction, functional evidence is lacking. Here, we provide several lines of evidence directly implicating a role of AhSLF-S(2) in self-incompatibility in Antirrhinum. First, a nonallelic physical interaction between AhSLF-S(2) and S-RNases was demonstrated by both coimmunoprecipitation and yeast two-hybrid assays. Second, AhSLF-S(2) interacts with ASK1- and CULLIN1-like proteins in Antirrhinum, and together, they likely form an Skp1/Cullin or CDC53/F-box (SCF) complex. Third, compatible pollination was specifically blocked after the treatment of the proteasomal inhibitors MG115 and MG132, but they had little effect on incompatible pollination both in vitro and in vivo, indicating that the ubiquitin/26S proteasome activity is involved in compatible pollination. Fourth, the ubiquitination level of style proteins was increased substantially after compatible pollination compared with incompatible pollination, and coimmunoprecipitation revealed that S-RNases were ubiquitinated after incubating pollen proteins with compatible but not with incompatible style proteins, suggesting that non-self S-RNases are possibly degraded by the ubiquitin/26S proteasome pathway. Fifth, the S-RNase level appeared to be reduced after 36 h of compatible pollination. Taken together, these results show that AhSLF-S(2) interacts with S-RNases likely through a proposed SCF(AhSLF-S2) complex that targets S-RNase destruction during compatible rather than incompatible pollination, thus providing a biochemical basis for the inhibition of pollen tube growth as observed in self-incompatible response in Antirrhinum.

摘要

在金鱼草和几个李属物种中已鉴定出由自交不亲和S位点编码的F盒(SLF)蛋白。尽管它们似乎在自交不亲和反应中起重要作用,但缺乏功能证据。在此,我们提供了几条直接证据,表明AhSLF-S(2)在金鱼草的自交不亲和中发挥作用。首先,通过免疫共沉淀和酵母双杂交试验均证明了AhSLF-S(2)与S-RNase之间存在非等位基因的物理相互作用。其次,AhSLF-S(2)与金鱼草中类似ASK1和CULLIN1的蛋白相互作用,并且它们可能共同形成Skp1/Cullin或CDC53/F盒(SCF)复合体。第三,在蛋白酶体抑制剂MG115和MG132处理后,亲和授粉被特异性阻断,但它们在体外和体内对不亲和授粉几乎没有影响,表明泛素/26S蛋白酶体活性参与亲和授粉。第四,与不亲和授粉相比,亲和授粉后花柱蛋白的泛素化水平大幅增加,免疫共沉淀显示,在用亲和而非不亲和的花柱蛋白孵育花粉蛋白后,S-RNase被泛素化,这表明非自身的S-RNase可能通过泛素/26S蛋白酶体途径被降解。第五,亲和授粉36小时后,S-RNase水平似乎降低。综上所述,这些结果表明,AhSLF-S(2)可能通过一个假定的SCF(AhSLF-S2)复合体与S-RNase相互作用,该复合体在亲和授粉而非不亲和授粉过程中靶向S-RNase的破坏,从而为金鱼草自交不亲和反应中观察到的花粉管生长抑制提供了生化基础。

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