Institute of Experimental Botany of the Czech Academy of Sciences, 16502, Prague 6, Czech Republic.
Department of Biochemistry and Microbiology, University of Chemistry and Technology Prague, 16628, Prague 6, Czech Republic.
Plant J. 2020 Jul;103(1):212-226. doi: 10.1111/tpj.14720. Epub 2020 Apr 24.
Phosphatidic acid (PA), an important signalling and metabolic phospholipid, is predominantly localized in the subapical plasma membrane (PM) of growing pollen tubes. PA can be produced from structural phospholipids by phospholipase D (PLD), but the isoforms responsible for production of PM PA were not identified yet and their functional roles remain unknown. Following genome-wide bioinformatic analysis of the PLD family in tobacco, we focused on the pollen-overrepresented PLDδ class. Combining live-cell imaging, gene overexpression, lipid-binding and structural bioinformatics, we characterized five NtPLDδ isoforms. Distinct PLDδ isoforms preferentially localize to the cytoplasm or subapical PM. Using fluorescence recovery after photobleaching, domain deletion and swapping analyses we show that membrane-bound PLDδs are tightly bound to PM, primarily via the central catalytic domain. Overexpression analyses suggested isoform PLDδ3 as the most important member of the PLDδ subfamily active in pollen tubes. Moreover, only PLDδ3 shows significant constitutive PLD activity in vivo and, in turn, PA promotes binding of PLDδ3 to the PM. This forms a positive feedback loop leading to PA accumulation and the formation of massive PM invaginations. Tightly controlled production of PA generated by PLDδ3 at the PM is important for maintaining the balance between various membrane trafficking processes that are crucial for plant cell tip growth.
磷脂酸(PA)是一种重要的信号转导和代谢性磷脂,主要定位于生长花粉管的亚顶质膜(PM)中。PA 可以由磷脂酶 D(PLD)从结构磷脂中产生,但负责产生 PM PA 的同工型尚未被鉴定,其功能作用仍然未知。在对烟草 PLD 家族进行全基因组生物信息学分析后,我们专注于花粉过表达的 PLDδ 类。通过活细胞成像、基因过表达、脂质结合和结构生物信息学,我们对 5 种 NtPLDδ 同工型进行了表征。不同的 PLDδ 同工型优先定位于细胞质或亚顶质膜。通过荧光恢复后光漂白、结构域缺失和交换分析,我们表明膜结合的 PLDδ 与 PM 紧密结合,主要通过中央催化结构域。过表达分析表明,PLDδ3 是花粉管中活性最强的 PLDδ 亚家族同工型。此外,只有 PLDδ3 在体内表现出显著的组成型 PLD 活性,并且 PA 促进 PLDδ3 与 PM 的结合。这形成了一个正反馈回路,导致 PA 积累和大量 PM 内陷的形成。PLDδ3 在 PM 处产生的 PA 的严格控制的产生对于维持对植物细胞尖端生长至关重要的各种膜运输过程之间的平衡非常重要。