首页> 美国卫生研究院文献>Journal of Experimental Botany >The pyrenoidal linker protein EPYC1 phase separates with hybrid Arabidopsis–Chlamydomonas Rubisco through interactions with the algal Rubisco small subunit
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The pyrenoidal linker protein EPYC1 phase separates with hybrid Arabidopsis–Chlamydomonas Rubisco through interactions with the algal Rubisco small subunit

机译:拟南芥连接子蛋白EPYC1通过与藻类Rubisco小亚基的相互作用而与拟南芥-衣藻杂交分离

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摘要

Photosynthetic efficiencies in plants are restricted by the CO2-fixing enzyme Rubisco but could be enhanced by introducing a CO2-concentrating mechanism (CCM) from green algae, such as Chlamydomonas reinhardtii (hereafter Chlamydomonas). A key feature of the algal CCM is aggregation of Rubisco in the pyrenoid, a liquid-like organelle in the chloroplast. Here we have used a yeast two-hybrid system and higher plants to investigate the protein–protein interaction between Rubisco and essential pyrenoid component 1 (EPYC1), a linker protein required for Rubisco aggregation. We showed that EPYC1 interacts with the small subunit of Rubisco (SSU) from Chlamydomonas and that EPYC1 has at least five SSU interaction sites. Interaction is crucially dependent on the two surface-exposed α-helices of the Chlamydomonas SSU. EPYC1 could be localized to the chloroplast in higher plants and was not detrimental to growth when expressed stably in Arabidopsis with or without a Chlamydomonas SSU. Although EPYC1 interacted with Rubisco in planta, EPYC1 was a target for proteolytic degradation. Plants expressing EPYC1 did not show obvious evidence of Rubisco aggregation. Nevertheless, hybrid Arabidopsis Rubisco containing the Chlamydomonas SSU could phase separate into liquid droplets with purified EPYC1 in vitro, providing the first evidence of pyrenoid-like aggregation for Rubisco derived from a higher plant.
机译:植物中的光合作用效率受到固定CO2的固定酶Rubisco的限制,但可以通过引入绿藻(如莱茵衣藻(以下称衣藻))的CO2浓缩机制(CCM)来提高。藻类CCM的关键特征是Rubisco在类胡萝卜素(叶绿体中的液体状细胞器)中的聚集。在这里,我们使用了酵母双杂交系统和高等植物来研究Rubisco与必需类胡萝卜素成分1(EPYC1)之间的蛋白质-蛋白质相互作用,该成分是Rubisco聚集所需的连接蛋白。我们表明,EPYC1与衣藻的Rubisco小亚基(SSU)相互作用,并且EPYC1至少具有五个SSU相互作用位点。相互作用至关重要地取决于衣藻SSU的两个表面暴露的α螺旋。 EPYC1可以定位在高等植物中的叶绿体上,并且在有或没有衣原体SSU的拟南芥中稳定表达时都不会损害其生长。尽管EPYC1在植物体内与Rubisco相互作用,但EPYC1是蛋白水解降解的目标。表达EPYC1的植物没有显示Rubisco聚集的明显证据。然而,含有衣藻属SSU的杂种拟南芥Rubisco可以在体外用纯化的EPYC1相分离成液滴,这为衍生自高等植物的Rubisco提供了类胡萝卜素样聚集的初步证据。

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