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Golgi-localized STELLO proteins regulate the assembly and trafficking of cellulose synthase complexes in Arabidopsis

机译:高尔基体定位的STELLO蛋白调节拟南芥中纤维素合酶复合物的组装和运输

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摘要

As the most abundant biopolymer on Earth, cellulose is a key structural component of the plant cell wall. Cellulose is produced at the plasma membrane by cellulose synthase (CesA) complexes (CSCs), which are assembled in the endomembrane system and trafficked to the plasma membrane. While several proteins that affect CesA activity have been identified, components that regulate CSC assembly and trafficking remain unknown. Here we show that STELLO1 and 2 are Golgi-localized proteins that can interact with CesAs and control cellulose quantity. In the absence of STELLO function, the spatial distribution within the Golgi, secretion and activity of the CSCs are impaired indicating a central role of the STELLO proteins in CSC assembly. Point mutations in the predicted catalytic domains of the STELLO proteins indicate that they are glycosyltransferases facing the Golgi lumen. Hence, we have uncovered proteins that regulate CSC assembly in the plant Golgi apparatus.
机译:作为地球上最丰富的生物聚合物,纤维素是植物细胞壁的关键结构成分。纤维素是由纤维素合酶(CesA)复合物(CSC)在质膜上产生的,这些复合物在内膜系统中组装并运输到质膜。虽然已经鉴定出几种影响CesA活性的蛋白质,但调控CSC组装和运输的成分仍然未知。在这里,我们显示STELLO1和2是高尔基体定位蛋白,可以与CesAs相互作用并控制纤维素量。在没有STELLO功能的情况下,高尔基体内的空间分布,CSC的分泌和活性均受到损害,这表明STELLO蛋白在CSC组装中起着核心作用。 STELLO蛋白的预测催化域中的点突变表明它们是面向高尔基体腔的糖基转移酶。因此,我们发现了调节植物高尔基体中CSC组装的蛋白质。

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