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拟南芥 BPM 蛋白作为底物衔接物与基于 Cullin3 的 E3 连接酶互作,影响植物的脂肪酸代谢。

Arabidopsis BPM proteins function as substrate adaptors to a cullin3-based E3 ligase to affect fatty acid metabolism in plants.

机构信息

School of Biological Sciences, Washington State University, Pullman, Washington 99164, USA.

出版信息

Plant Cell. 2013 Jun;25(6):2253-64. doi: 10.1105/tpc.112.107292. Epub 2013 Jun 21.

Abstract

Regulation of transcriptional processes is a critical mechanism that enables efficient coordination of the synthesis of required proteins in response to environmental and cellular changes. Transcription factors require accurate activity regulation because they play a critical role as key mediators assuring specific expression of target genes. In this work, we show that cullin3-based E3 ligases have the potential to interact with a broad range of ethylene response factor (ERF)/APETALA2 (AP2) transcription factors, mediated by Math-BTB/POZ (for Meprin and TRAF [tumor necrosis factor receptor associated factor] homolog)-Broad complex, Tramtrack, Bric-a-brac/Pox virus and Zinc finger) proteins. The assembly with an E3 ligase causes degradation of their substrates via the 26S proteasome, as demonstrated for the wrinkled1 ERF/AP2 protein. Furthermore, loss of Math-BTB/POZ proteins widely affects plant development and causes altered fatty acid contents in mutant seeds. Overall, this work demonstrates a link between fatty acid metabolism and E3 ligase activities in plants and establishes CUL3-based E3 ligases as key regulators in transcriptional processes that involve ERF/AP2 family members.

摘要

转录过程的调控是一种关键机制,它能够使细胞在应对环境和细胞变化时高效协调所需蛋白质的合成。转录因子需要精确的活性调节,因为它们作为关键介质,确保了靶基因的特异性表达,从而发挥着至关重要的作用。在这项工作中,我们表明,基于 Cullin3 的 E3 连接酶有可能通过 Math-BTB/POZ(Meprin 和 TRAF [肿瘤坏死因子受体相关因子]同源物)-Broad complex、Tramtrack、Bric-a-brac/Pox virus 和 Zinc finger 蛋白与广泛的乙烯响应因子 (ERF)/APETALA2 (AP2) 转录因子相互作用。组装 E3 连接酶会导致其底物通过 26S 蛋白酶体降解,如皱皮 1 ERF/AP2 蛋白所示。此外,Math-BTB/POZ 蛋白的缺失广泛影响植物发育,并导致突变体种子中脂肪酸含量发生改变。总的来说,这项工作证明了植物中脂肪酸代谢与 E3 连接酶活性之间存在联系,并确立了基于 CUL3 的 E3 连接酶作为涉及 ERF/AP2 家族成员的转录过程中的关键调节剂。

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