首页> 外文期刊>The Plant Cell >Arabidopsis Sec1/Munc18 protein SEC11 is a competitive and dynamic modulator of SNARE binding and SYP121-dependent vesicle traffic.
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Arabidopsis Sec1/Munc18 protein SEC11 is a competitive and dynamic modulator of SNARE binding and SYP121-dependent vesicle traffic.

机译:拟南芥Sec1 / Munc18蛋白SEC11是SNARE结合和SYP121依赖性囊泡运输的竞争性和动态调节剂。

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摘要

The Arabidopsis thaliana Qa-SNARE SYP121 (=SYR1/PEN1) drives vesicle traffic at the plasma membrane of cells throughout the vegetative plant. It facilitates responses to drought, to the water stress hormone abscisic acid, and to pathogen attack, and it is essential for recovery from so-called programmed stomatal closure. How SYP121-mediated traffic is regulated is largely unknown, although it is thought to depend on formation of a fusion-competent SNARE core complex with the cognate partners VAMP721 and SNAP33. Like SYP121, the Arabidopsis Sec1/Munc18 protein SEC11 (=KEULE) is expressed throughout the vegetative plant. We find that SEC11 binds directly with SYP121 both in vitro and in vivo to affect secretory traffic. Binding occurs through two distinct modes, one requiring only SEC11 and SYP121 and the second dependent on assembly of a complex with VAMP721 and SNAP33. SEC11 competes dynamically for SYP121 binding with SNAP33 and VAMP721, and this competition is predicated by SEC11 association with the N terminus of SYP121. These and additional data are consistent with a model in which SYP121-mediated vesicle fusion is regulated by an unusual "handshaking" mechanism of concerted SEC11 debinding and rebinding. They also implicate one or more factors that alter or disrupt SEC11 association with the SYP121 N terminus as an early step initiating SNARE complex formation.
机译:拟南芥Qa-SNARE SYP121(= SYR1 / PEN1)驱动整个营养植物中细胞质膜的囊泡运输。它促进了对干旱,对水分胁迫激素脱落酸和对病原体侵袭的反应,并且对于从所谓的程序化气孔关闭中恢复至关重要。尽管人们认为SYP121介导的通信量如何调节取决于与同类伙伴VAMP721和SNAP33形成具有融合能力的SNARE核心复合物,但目前尚不清楚。与SYP121一样,拟南芥Sec1 / Munc18蛋白SEC11(= KEULE)在整个营养植物中表达。我们发现SEC11在体外和体内都直接与SYP121结合,从而影响分泌运输。绑定通过两种不同的模式发生,一种仅需要SEC11和SYP121,第二种依赖于带有VAMP721和SNAP33的复合体的组装。 SEC11与SNAP33和VAMP721动态竞争SYP121结合,并且该竞争由SEC11与SYP121的N末端的结合来预测。这些数据和其他数据与SYP121介导的囊泡融合受SEC11脱脂和重新结合的异常“握手”机制调控的模型一致。它们还暗示一个或多个因素会改变或破坏SEC11与SYP121 N末端的结合,这是启动SNARE复合物形成的早期步骤。

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