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Cellulose synthase interactive protein 1 (CSI1) mediates the intimate relationship between cellulose microfibrils and cortical microtubules

机译:纤维素合酶相互作用蛋白1(CSI1)介导纤维素微纤维和皮层微管之间的亲密关系。

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摘要

Cellulose is synthesized at the plasma membrane by protein complexes known as cellulose synthase complexes (CSCs). The cellulose-microtubule alignment hypothesis states that there is a causal link between the orientation of cortical microtubules and orientation of nascent cellulose microfibrils. The mechanism behind the alignment hypothesis is largely unknown. CESA interactive protein 1 (CSI1) interacts with CSCs and potentially links CSCs to the cytoskeleton. CSI1 not only co-localizes with CSCs but also travels bi-directionally in a speed indistinguishable from CSCs. The linear trajectories of CSI1-RFP coincide with the underlying microtubules labeled by YFP-TUA5. In the absence of CSI1, both the distribution and the motility of CSCs are defective and the alignment of CSCs and microtubules is disrupted. These observations led to the hypothesis that CSI1 directly mediates the interaction between CSCs and microtubules. In support of this hypothesis, CSI1 binds to microtubules directly by an in vitro microtubule-binding assay. In addition to a role in serving as a messenger from microtubule to CSCs, CSI1 labels SmaCCs/MASCs, a compartment that has been proposed to be involved in CESA trafficking and/or delivery to the plasma membrane.
机译:纤维素是通过称为纤维素合酶复合物(CSC)的蛋白质复合物在质膜上合成的。纤维素-微管排列假说指出,皮层微管的方向与新生纤维素微纤维的方向之间存在因果关系。对准假说背后的机制在很大程度上是未知的。 CESA互动蛋白1(CSI1)与CSC相互作用,并可能将CSC与细胞骨架联系起来。 CSI1不仅与CSC共同定位,而且以与CSC不可区分的速度双向传播。 CSI1-RFP的线性轨迹与YFP-TUA5标记的基础微管重合。在没有CSI1的情况下,CSC的分布和运动性都是有缺陷的,并且CSC和微管的排列被破坏。这些观察结果提出了CSI1直接介导CSC和微管之间相互作用的假设。为了支持该假设,CSI1通过体外微管结合测定直接与微管结合。除了充当从微管到CSC的信使外,CSI1还标记了SmaCC / MASC,这是一个已提议参与CESA转运和/或传递至质膜的隔室。

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