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首页> 外文期刊>Journal of Experimental Botany >ARA7(Q69L) expression in transgenic Arabidopsis cells induces the formation of enlarged multivesicular bodies.
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ARA7(Q69L) expression in transgenic Arabidopsis cells induces the formation of enlarged multivesicular bodies.

机译:转基因拟南芥细胞中的ARA7(Q69L)表达诱导扩大的多囊泡体的形成。

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摘要

Arabidopsis thaliana ARA7 (AtRabF2 b), a member of the plant Rab5 small GTPases functioning in the vacuolar transport pathway, localizes to pre-vacuolar compartments (PVCs), known as multivesicular bodies (MVBs) in plant cells. Overexpression of the constitutively active GTP-bound mutant of ARA7, ARA7(Q69L), induces the formation of large ring-like structures (1-2 micro m in diameter). To better understand the biology of these ARA7(Q69L)-induced ring-like structures, transgenic Arabidopsis cell lines expressing ARA7(Q69L) tagged with green fluorescent protein (GFP) under the control of a heat shock-inducible promoter were generated. In these transgenic cells, robust ring-like structures were formed after 4 h of heat shock induction. Transient co-expression, confocal imaging, and immunogold electron microscopy (immunogold-EM) experiments demonstrated that these GFP-ARA7(Q69L)-labelled ring-like structures were distinct from the Golgi apparatus and trans-Golgi network, but were labelled with an antibody against an MVB marker protein. In addition, live cell imaging and detailed EM analysis showed that the GFP-ARA7(Q69L)-induced spherical structures originated from the homotypic fusion of MVBs. In summary, it was demonstrated that GFP-ARA7(Q69L) expression is an efficient tool for studying PVC/MVB-mediated protein trafficking and vacuolar degradation in plant cells.
机译:拟南芥ARA7(AtRabF2 b)是在液泡运输途径中起作用的植物Rab5小GTPase的成员,位于植物细胞中被称为多囊泡体(MVB)的前气室(PVC)内。组成型活性GTP结合的ARA7突变体ARA7(Q69L)的过表达诱导形成大的环状结构(直径1-2微米)。为了更好地理解这些由ARA7(Q69L)诱导的环状结构的生物学特性,在热激诱导型启动子的控制下,产生了表达带有绿色荧光蛋白(GFP)标签的ARA7(Q69L)的转基因拟南芥细胞系。在这些转基因细胞中,热激诱导4小时后形成了坚固的环状结构。瞬态共表达,共聚焦成像和免疫金电子显微镜(immunogold-EM)实验表明,这些GFP-ARA7(Q69L)标记的环状结构与高尔基体和反式高尔基体网络不同,但被标记为MVB标记蛋白的抗体。此外,活细胞成像和详细的EM分析表明,GFP-ARA7(Q69L)诱导的球形结构源自MVB的同型融合。总之,已证明GFP-ARA7(Q69L)表达是研究植物细胞中PVC / MVB介导的蛋白质运输和液泡降解的有效工具。

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