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SNARE蛋白SYP121与质膜水通道蛋白PIP2;7之间的相互作用涉及不同的蛋白质结构域。

Interaction Between the SNARE SYP121 and the Plasma Membrane Aquaporin PIP2;7 Involves Different Protein Domains.

作者信息

Laloux Timothée, Matyjaszczyk Irwin, Beaudelot Simon, Hachez Charles, Chaumont François

机构信息

Louvain Institute of Biomolecular Science and Technology, UCLouvain, Louvain-la-Neuve, Belgium.

出版信息

Front Plant Sci. 2021 Jan 18;11:631643. doi: 10.3389/fpls.2020.631643. eCollection 2020.

Abstract

Plasma membrane intrinsic proteins (PIPs) are channels facilitating the passive diffusion of water and small solutes. Arabidopsis PIP2;7 trafficking occurs through physical interaction with SNARE proteins including the syntaxin SYP121, a plasma membrane Qa-SNARE involved in membrane fusion. To better understand the interaction mechanism, we aimed at identifying the interaction motifs in SYP121 and PIP2;7 using ratiometric bimolecular fluorescence complementation assays in . SYP121 consists of four regions, N, H, Q, and C, and sequential deletions revealed that the C region, containing the transmembrane domain, as well as the H and Q regions, containing the Habc and Qa-SNARE functional domains, interact with PIP2;7. Neither the linker between the Habc and the Qa-SNARE domains nor the H or Q regions alone could fully restore the interaction with PIP2;7, suggesting that the interacting motif depends on the conformation taken by the HQ region. When investigating the interacting motif(s) in PIP2;7, we observed that deletion of the cytosolic N- and/or C- terminus led to a significant decrease in the interaction with SYP121. Shorter deletions revealed that at the N-terminal amino acid residues 18-26 were involved in the interaction. Domain swapping experiments between PIP2;7 and PIP2;6, a PIP isoform that does not interact with SYP121, showed that PIP2;7 N-terminal part up to the loop C was required to restore the full interaction signal, suggesting that, as it is the case for SYP121, the interaction motif(s) in PIP2;7 depend on the protein conformation. Finally, we also showed that PIP2;7 physically interacted with other Arabidopsis SYP1s and SYP121 orthologs.

摘要

质膜内在蛋白(PIPs)是促进水和小溶质被动扩散的通道。拟南芥PIP2;7的运输通过与包括 syntaxin SYP121在内的SNARE蛋白发生物理相互作用来实现,SYP121是一种参与膜融合的质膜Qa-SNARE。为了更好地理解相互作用机制,我们旨在利用基于比值的双分子荧光互补分析在体内鉴定SYP121和PIP2;7中的相互作用基序。SYP121由N、H、Q和C四个区域组成,序列缺失分析表明,包含跨膜结构域的C区域以及包含Habc和Qa-SNARE功能结构域的H和Q区域与PIP2;7相互作用。Habc和Qa-SNARE结构域之间的连接区以及单独的H或Q区域都不能完全恢复与PIP2;7的相互作用,这表明相互作用基序取决于HQ区域所采取的构象。在研究PIP2;7中的相互作用基序时,我们观察到胞质N端和/或C端的缺失导致与SYP121的相互作用显著降低。更短片段的缺失表明,N端的18 - 26位氨基酸残基参与了相互作用。PIP2;7与不与SYP121相互作用的PIP异构体PIP2;6之间的结构域交换实验表明,PIP2;7直至环C的N端部分是恢复完全相互作用信号所必需的,这表明与SYP121的情况一样,PIP2;7中的相互作用基序取决于蛋白质构象。最后,我们还表明PIP2;7与其他拟南芥SYP1和SYP121直系同源物发生物理相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecf8/7847993/c0c08f1770a5/fpls-11-631643-g001.jpg

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