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本文引用的文献

1
Evolution, structure and function of mitochondrial carriers: a review with new insights.线粒体载体的进化、结构和功能:综述及新见解
Plant J. 2011 Apr;66(1):161-81. doi: 10.1111/j.1365-313X.2011.04516.x.
2
Neuroglial ATP release through innexin channels controls microglial cell movement to a nerve injury.缝隙连接蛋白通道介导的神经胶质细胞 ATP 释放调控小胶质细胞向神经损伤部位迁移。
J Gen Physiol. 2010 Oct;136(4):425-42. doi: 10.1085/jgp.201010476.
3
Increased activity of the vacuolar monosaccharide transporter TMT1 alters cellular sugar partitioning, sugar signaling, and seed yield in Arabidopsis.液泡单糖转运蛋白 TMT1 活性增加改变了拟南芥细胞的糖分配、糖信号和种子产量。
Plant Physiol. 2010 Oct;154(2):665-77. doi: 10.1104/pp.110.162040. Epub 2010 Aug 13.
4
Extracellular adenosine triphosphate and adenosine in cancer.细胞外三磷酸腺苷和腺苷在癌症中的作用。
Oncogene. 2010 Sep 30;29(39):5346-58. doi: 10.1038/onc.2010.292. Epub 2010 Jul 26.
5
Increasing sucrose uptake capacity of wheat grains stimulates storage protein synthesis.提高小麦籽粒蔗糖摄取能力可刺激贮藏蛋白合成。
Plant Physiol. 2010 Feb;152(2):698-710. doi: 10.1104/pp.109.150854. Epub 2009 Dec 14.
6
The central regulation of plant physiology by adenylates.植物生理学的腺嘌呤调控中枢。
Trends Plant Sci. 2010 Feb;15(2):98-105. doi: 10.1016/j.tplants.2009.11.004. Epub 2009 Dec 11.
7
Intersection of two signalling pathways: extracellular nucleotides regulate pollen germination and pollen tube growth via nitric oxide.两条信号通路的交叉:细胞外核苷酸通过一氧化氮调节花粉萌发和花粉管生长。
J Exp Bot. 2009;60(7):2129-38. doi: 10.1093/jxb/erp091. Epub 2009 Apr 10.
8
An efficient organic solvent based extraction method for the proteomic analysis of Arabidopsis plasma membranes.一种用于拟南芥质膜蛋白质组学分析的基于有机溶剂的高效提取方法。
J Proteome Res. 2009 Jun;8(6):2752-67. doi: 10.1021/pr801044y.
9
Diatom plastids depend on nucleotide import from the cytosol.硅藻质体依赖于从细胞质中导入核苷酸。
Proc Natl Acad Sci U S A. 2009 Mar 3;106(9):3621-6. doi: 10.1073/pnas.0808862106. Epub 2009 Feb 12.
10
Extracellular ATP in the immune system: more than just a "danger signal".免疫系统中的细胞外ATP:不止是一个“危险信号”。
Sci Signal. 2009 Feb 3;2(56):pe6. doi: 10.1126/scisignal.256pe6.

鉴定拟南芥质膜定位的 ATP 转运体在花药发育中的重要作用。

Identification of an Arabidopsis plasma membrane-located ATP transporter important for anther development.

机构信息

Plant Physiology, Technical University of Kaiserslautern, Kaiserslautern, Germany.

出版信息

Plant Cell. 2011 May;23(5):1932-44. doi: 10.1105/tpc.111.084574. Epub 2011 May 3.

DOI:10.1105/tpc.111.084574
PMID:21540435
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3123944/
Abstract

ATP acts as an extracellular signal molecule in plants. However, the nature of the mechanisms that export this compound into the apoplast are under debate. We identified the protein PM-ANT1 as a candidate transporter able to mediate ATP export. PM-ANT1 joins the mitochondrial carrier family, lacks an N-terminal amino acid extension required for organelle localization, and locates to the plasma membrane. Recombinant PM-ANT1 transports ATP, and the gene is substantially expressed in mature pollen grains. Artificial microRNA (amiRNA) mutants show reduced silique length and less seeds per silique but increased seed weight associated with unchanged pollen viability. Anthers from amiRNA mutants exhibited a normal early development, but stomium breakage is inhibited, leading to impaired anther dehiscence. This results in reduced self-pollination and thus decreased fertilization efficiency. amiRNA pollen grains showed increased intracellular ATP levels but decreased extracellular ATP levels. The latter effects are in line with transport properties of recombinant PM-ANT1, supporting in planta that functional PM-ANT1 resides in the plasma membrane and concur with the PM-ANT1 expression pattern. We assume that PM-ANT1 contributes to ATP export during pollen maturation. ATP export may serve as an extracellular signal required for anther dehiscence and is a novel factor critical for pollination and autogamy.

摘要

ATP 在植物中作为一种细胞外信号分子发挥作用。然而,将这种化合物输出到质外体的机制性质仍存在争议。我们鉴定出 PM-ANT1 蛋白是一种候选转运蛋白,能够介导 ATP 的输出。PM-ANT1 属于线粒体载体家族,缺乏细胞器定位所需的 N 端氨基酸延伸,定位于质膜。重组 PM-ANT1 可转运 ATP,该基因在成熟花粉粒中大量表达。人工 microRNA(amiRNA)突变体显示出明显的短角果长度、角果中种子数量减少但种子重量增加,而花粉活力不变。amiRNA 突变体的花药表现出正常的早期发育,但气孔破裂被抑制,导致花药开裂受损。这导致自花授粉减少,从而降低受精效率。amiRNA 花粉粒显示出增加的细胞内 ATP 水平,但细胞外 ATP 水平降低。后一种效应与重组 PM-ANT1 的转运特性一致,支持 PM-ANT1 功能在质膜上,并与 PM-ANT1 的表达模式一致。我们假设 PM-ANT1 有助于花粉成熟过程中的 ATP 输出。ATP 输出可能作为花药开裂所需的细胞外信号,是授粉和自交的关键新因素。