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Sucrose Synthase is an Integral Component of the Cellulose Synthesis Machinery

机译:蔗糖合酶是纤维素合成机器的重要组成部分

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Cellulose synthesis in plants is believed to be carried out by the plasma membrane-associated rosette structure which can be observed by electron microscopy. Despite decade-long speculation, it had not been demonstrated whether the rosette is the site of catalytic activity of cellulose synthesis. To determine the relationship between this structure and cellulose synthesis, we successfully isolated detergent-insoluble rosettes from the plasma membrane of bean epicotyls. However, the purified rosettes did not possess cellulose synthesis activity in vitro. Conversely, detergent-soluble granular particles of ∼9.5–10 nm diameter were also isolated and exhibited UDP-glucose binding activity and possessed β-1,4-glucan (cellulose) synthesis activity in vitro. The particle, referred to as the catalytic unit of cellulose synthesis, was enriched with a 78 kDa polypeptide which was verified as sucrose synthase like by mass spectrometry and immunoblotting. The catalytic units were able to bind to the rosettes and retained the cellulose synthesis activity in the presence of UDP-glucose or sucrose plus UDP when supplemented with magnesium. The incorporation of the catalytic unit into the rosette structure was confirmed by immunogold labeling with anti-sucrose synthase antibodies under an electron microscope. Our results suggest that the plasma membrane-associated rosette anchors the catalytic unit of cellulose synthesis to form the functional cellulose synthesis machinery.
机译:据信植物中的纤维素合成是通过质膜相关的玫瑰花结结构进行的,该结构可以通过电子显微镜观察。尽管进行了长达十年的推测,但尚未证明玫瑰花结是否是纤维素合成的催化活性位点。为了确定这种结构与纤维素合成之间的关系,我们成功地从豆表胚轴的质膜上分离了洗涤剂不溶性玫瑰华饰。但是,纯化的玫瑰花结在体外不具有纤维素合成活性。相反,还分离出直径约9.5–10 nm的可溶于洗涤剂的颗粒状颗粒,并具有UDP-葡萄糖结合活性,并在体外具有β-1,4-葡聚糖(纤维素)合成活性。该颗粒称为纤维素合成的催化单元,富含78 kDa的多肽,该多肽已通过质谱和免疫印迹等方法证实为蔗糖合酶。当添加镁时,在UDP-葡萄糖或蔗糖加UDP的存在下,催化单元能够结合到玫瑰花结并保留纤维素合成活性。通过在电子显微镜下用抗蔗糖合酶抗体进行免疫金标记来确认催化单元结合到玫瑰花结结构中。我们的结果表明,质膜相关的玫瑰花结锚定了纤维素合成的催化单元,形成了功能性纤维素合成机制。

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