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钙调蛋白结构域蛋白激酶PiCDPK1与类14-3-3蛋白NtGF14相互作用以调节花粉管生长。

Calmodulin-Domain Protein Kinase PiCDPK1 Interacts with the 14-3-3-like Protein NtGF14 to Modulate Pollen Tube Growth.

作者信息

Scheible Nolan, Henning Paige M, McCubbin Andrew G

机构信息

School of Biological Sciences, Washington State University, Pullman, WA 99164, USA.

出版信息

Plants (Basel). 2024 Feb 3;13(3):451. doi: 10.3390/plants13030451.

Abstract

Calcium-mediated signaling pathways are known to play important roles in the polar growth of pollen tubes. The calcium-dependent protein kinase, PiCDPK1, has been shown to be involved in regulating this process through interaction with a guanine dissociation inhibitor, PiRhoGDI1. To more fully understand the role of PiCDPK1 in pollen tube extension, we designed a pull-down study to identify additional substrates of this kinase. These experiments identified 123 putative interactors. Two of the identified proteins were predicted to directly interact with PiCDPK1, and this possibility was investigated in planta. The first, NtGF14, a 14-3-3-like protein, did not produce a noticeable phenotype when overexpressed in pollen alone but partially rescued the spherical tube phenotype caused by PiCDPK1 over-expression when co-over-expressed with the kinase. The second, NtREN1, a GTPase activating protein (GAP), severely inhibited pollen tube germination when over-expressed, and its co-over-expression with PiCDPK1 did not substantially affect this phenotype. These results suggest a novel in vivo interaction between NtGF14 and PiCDPK1 but do not support the direct interaction between PiCDPK1 and NtREN1. We demonstrate the utility of the methodology used to identify potential protein interactions while confirming the necessity of additional studies to confirm their validity. Finally, additional support was found for intersection between PiCDPK1 and RopGTPase pathways to control polar growth at the pollen tube tip.

摘要

已知钙介导的信号通路在花粉管的极性生长中发挥重要作用。钙依赖性蛋白激酶PiCDPK1已被证明通过与鸟嘌呤解离抑制剂PiRhoGDI1相互作用参与调节这一过程。为了更全面地了解PiCDPK1在花粉管延伸中的作用,我们设计了一项下拉实验来鉴定该激酶的其他底物。这些实验鉴定出123个假定的相互作用蛋白。其中两个已鉴定的蛋白被预测与PiCDPK1直接相互作用,并在植物体内对这种可能性进行了研究。第一个是NtGF14,一种14-3-3样蛋白,单独在花粉中过表达时未产生明显表型,但与该激酶共过表达时部分挽救了由PiCDPK1过表达引起的球形花粉管表型。第二个是NtREN1,一种GTP酶激活蛋白(GAP),过表达时严重抑制花粉管萌发,其与PiCDPK1共过表达并未实质性影响该表型。这些结果表明NtGF14与PiCDPK1之间存在一种新的体内相互作用,但不支持PiCDPK1与NtREN1之间的直接相互作用。我们展示了用于鉴定潜在蛋白质相互作用的方法的实用性,同时证实了需要进行更多研究来确认其有效性。最后,发现了更多支持PiCDPK1与RopGTPase通路之间存在交叉以控制花粉管顶端极性生长的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/409e/10857193/d13aeab30669/plants-13-00451-g001.jpg

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