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Comparative Structural and Computational Analysis Supports Eighteen Cellulose Synthases in the Plant Cellulose Synthesis Complex

机译:比较的结构和计算分析在植物纤维素合成复合物中支持十八种纤维素合酶

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摘要

A six-lobed membrane spanning cellulose synthesis complex (CSC) containing multiple cellulose synthase (CESA) glycosyltransferases mediates cellulose microfibril formation. The number of CESAs in the CSC has been debated for decades in light of changing estimates of the diameter of the smallest microfibril formed from the β-1,4 glucan chains synthesized by one CSC. We obtained more direct evidence through generating improved transmission electron microscopy (TEM) images and image averages of the rosette-type CSC, revealing the frequent triangularity and average cross-sectional area in the plasma membrane of its individual lobes. Trimeric oligomers of two alternative CESA computational models corresponded well with individual lobe geometry. A six-fold assembly of the trimeric computational oligomer had the lowest potential energy per monomer and was consistent with rosette CSC morphology. Negative stain TEM and image averaging showed the triangularity of a recombinant CESA cytosolic domain, consistent with previous modeling of its trimeric nature from small angle scattering (SAXS) data. Six trimeric SAXS models nearly filled the space below an average FF-TEM image of the rosette CSC. In summary, the multifaceted data support a rosette CSC with 18 CESAs that mediates the synthesis of a fundamental microfibril composed of 18 glucan chains.
机译:包含多个纤维素合酶(CESA)糖基转移酶的六叶跨膜纤维素合成复合物(CSC)介导纤维素微原纤维的形成。鉴于改变由一个CSC合成的β-1,4葡聚糖链形成的最小微纤维直径的估计值不断变化,CSC中CESA的数量已经争论了数十年。通过生成改进的透射电子显微镜(TEM)图像和玫瑰花型CSC的图像平均值,我们获得了更直接的证据,揭示了其单个叶的质膜中频繁出现三角形和平均横截面积。两个备选CESA计算模型的三聚体低聚物与单个波瓣的几何形状非常吻合。三聚体计算低聚物的六重组装具有每个单体最低的势能,并且与玫瑰花形CSC形态一致。负染色TEM和图像平均显示重组CESA胞质域的三角形性,与先前根据小角度散射(SAXS)数据对其三聚体性质的建模一致。六个三聚体SAXS模型几乎填充了玫瑰花形CSC的平均FF-TEM图像下方的空间。综上所述,多方面的数据支持具有18个CESA的玫瑰花结CSC,其介导由18个葡聚糖链组成的基本微纤维的合成。

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