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基于基因组“敲入”和雌二醇滴定表达分析荧光PpROP1和PpROP-GEF4融合蛋白在苔藓原丝体中的定位

Analysis of the Localization of Fluorescent PpROP1 and PpROP-GEF4 Fusion Proteins in Moss Protonemata Based on Genomic "Knock-In" and Estradiol-Titratable Expression.

作者信息

Le Bail Aude, Schulmeister Sylwia, Perroud Pierre-François, Ntefidou Maria, Rensing Stefan A, Kost Benedikt

机构信息

Cell Biology, Department of Biology, Friedrich-Alexander University Erlangen-Nürnberg, Erlangen, Germany.

Plant Cell Biology, Faculty of Biology, Philipps University of Marburg, Marburg, Germany.

出版信息

Front Plant Sci. 2019 Apr 12;10:456. doi: 10.3389/fpls.2019.00456. eCollection 2019.

Abstract

Tip growth of pollen tubes, root hairs, and apical cells of moss protonemata is controlled by ROP (Rho of plants) GTPases, which were shown to accumulate at the apical plasma membrane of these cells. However, most ROP localization patterns reported in the literature are based on fluorescent protein tagging and need to be interpreted with caution, as ROP fusion proteins were generally overexpressed at undefined levels, in many cases without assessing effects on tip growth. ROP-GEFs, important regulators of ROP activity, were also described to accumulate at the apical plasma membrane during tip growth. However, to date only the localization of fluorescent ROP-GEF fusion proteins strongly overexpressed using highly active promoters have been investigated. Here, the intracellular distributions of fluorescent PpROP1 and PpROP-GEF4 fusion proteins expressed at essentially endogenous levels in apical cells of "knock-in" protonemata were analyzed. Whereas PpROP-GEF4 was found to associate with a small apical plasma membrane domain, PpROP1 expression was below the detection limit. Estradiol-titratable expression of a fluorescent PpROP1 fusion protein at the lowest detectable level, at which plant development was only marginally affected, was therefore employed to show that PpROP1 also accumulates at the apical plasma membrane, although within a substantially larger domain. Interestingly, RNA-Seq data indicated that the majority of all genes active in protonemata are expressed at lower levels than , suggesting that estradiol-titratable expression may represent an important alternative to "knock-in" based analysis of the intracellular distribution of fluorescent fusion proteins in protonemal cells.

摘要

花粉管、根毛以及苔藓原丝体顶端细胞的顶端生长受ROP(植物Rho)GTP酶控制,这些酶在这些细胞的顶端质膜上积累。然而,文献中报道的大多数ROP定位模式基于荧光蛋白标记,需要谨慎解读,因为ROP融合蛋白通常在未明确的水平上过度表达,在许多情况下没有评估对顶端生长的影响。ROP-GEFs是ROP活性的重要调节因子,也被描述为在顶端生长期间在顶端质膜上积累。然而,迄今为止,仅研究了使用高活性启动子强烈过度表达的荧光ROP-GEF融合蛋白的定位。在此,分析了在“敲入”原丝体顶端细胞中基本以内源水平表达的荧光PpROP1和PpROP-GEF4融合蛋白的细胞内分布。虽然发现PpROP-GEF4与一个小的顶端质膜区域相关,但PpROP1的表达低于检测限。因此,采用可通过雌二醇滴定表达荧光PpROP1融合蛋白,使其处于最低可检测水平,此时植物发育仅受到轻微影响,以表明PpROP1也在顶端质膜上积累,尽管在一个大得多的区域内。有趣的是,RNA测序数据表明,在原丝体中活跃的所有基因中的大多数表达水平低于……,这表明可通过雌二醇滴定表达可能是对基于“敲入”分析原丝体细胞中荧光融合蛋白细胞内分布的一种重要替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58c7/6473103/19a5c6cfd6bf/fpls-10-00456-g001.jpg

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