Laboratory of Molecular Plant Biology, Katholieke Universiteit Leuven, B-3001 Leuven, Belgium.
Plant Physiol. 2013 Apr;161(4):1670-81. doi: 10.1104/pp.112.209460. Epub 2013 Feb 27.
Cell wall invertases (cwINVs), with a high affinity for the cell wall, are fundamental enzymes in the control of plant growth, development, and carbon partitioning. Most interestingly, defective cwINVs have been described in several plant species. Their highly attenuated sucrose (Suc)-hydrolyzing capacity is due to the absence of aspartate-239 (Asp-239) and tryptophan-47 (Trp-47) homologs, crucial players for stable binding in the active site and subsequent hydrolysis. However, so far, the precise roles of such defective cwINVs remain unclear. In this paper, we report on the functional characterization of tobacco (Nicotiana tabacum) Nin88, a presumed fully active cwINV playing a crucial role during pollen development. It is demonstrated here that Nin88, lacking both Asp-239 and Trp-47 homologs, has no invertase activity. This was further supported by modeling studies and site-directed mutagenesis experiments, introducing both Asp-239 and Trp-47 homologs, leading to an enzyme with a distinct Suc-hydrolyzing capacity. In vitro experiments suggest that the addition of Nin88 counteracts the unproductive and rather aspecific binding of tobacco cwINV1 to the wall, leading to higher activities in the presence of Suc and a more efficient interaction with its cell wall inhibitor. A working model is presented based on these findings, allowing speculation on the putative role of Nin88 in muro. The results presented in this work are an important first step toward unraveling the specific roles of plant defective cwINVs.
细胞壁转化酶(cwINVs)对细胞壁具有高亲和力,是控制植物生长、发育和碳分配的基本酶。最有趣的是,在几种植物物种中已经描述了缺陷型 cwINVs。它们对蔗糖(Suc)的水解能力大大减弱,是由于缺乏天冬氨酸-239(Asp-239)和色氨酸-47(Trp-47)的同源物,而这些同源物对于在活性部位的稳定结合和随后的水解是至关重要的。然而,到目前为止,这种缺陷型 cwINVs 的精确作用仍不清楚。在本文中,我们报告了烟草(Nicotiana tabacum)Nin88 的功能特征,Nin88 是一种假定的完全活性的 cwINV,在花粉发育过程中起着关键作用。本文证明,缺乏 Asp-239 和 Trp-47 同源物的 Nin88 没有转化酶活性。这进一步得到了建模研究和定点突变实验的支持,引入了 Asp-239 和 Trp-47 同源物,导致具有明显蔗糖水解能力的酶。体外实验表明,添加 Nin88 可以对抗烟草 cwINV1 与细胞壁的非生产性和相当非特异性结合,从而在存在 Suc 的情况下提高活性,并与细胞壁抑制剂更有效地相互作用。基于这些发现提出了一个工作模型,允许推测 Nin88 在细胞壁中的潜在作用。本工作的结果是揭示植物缺陷型 cwINVs 特定作用的重要的第一步。