Perez Dahlia E, Hoyer J Steen, Johnson Ayanna I, Moody Zachary R, Lopez Joseph, Kaplinsky Nicholas J
Department of Biology, Swarthmore College, Swarthmore, Pennsylvania 19081, USA.
Plant Physiol. 2009 Sep;151(1):241-52. doi: 10.1104/pp.109.142125. Epub 2009 Jul 1.
Plants have evolved a range of cellular responses to maintain developmental homeostasis and to survive over a range of temperatures. Here, we describe the in vivo and in vitro functions of BOBBER1 (BOB1), a NudC domain containing Arabidopsis (Arabidopsis thaliana) small heat shock protein. BOB1 is an essential gene required for the normal partitioning and patterning of the apical domain of the Arabidopsis embryo. Because BOB1 loss-of-function mutants are embryo lethal, we used a partial loss-of-function allele (bob1-3) to demonstrate that BOB1 is required for organismal thermotolerance and postembryonic development. Recombinant BOB1 protein functions as a molecular chaperone and prevents the aggregation of a model protein substrate in vitro. In plants, BOB1 is cytoplasmic at basal temperatures, but forms heat shock granules containing canonical small heat shock proteins at high temperatures. In addition to thermotolerance defects, bob1-3 exhibits pleiotropic development defects during all phases of development. bob1-3 phenotypes include decreased rates of shoot and root growth as well as patterning defects in leaves, flowers, and inflorescence meristems. Most eukaryotic chaperones play important roles in protein folding either during protein synthesis or during cellular responses to denaturing stress. Our results provide, to our knowledge, the first evidence of a plant small heat shock protein that has both developmental and thermotolerance functions and may play a role in both of these folding networks.
植物已经进化出一系列细胞反应,以维持发育稳态并在一定温度范围内存活。在此,我们描述了拟南芥(Arabidopsis thaliana)中一种含有NudC结构域的小热激蛋白BOBBER1(BOB1)在体内和体外的功能。BOB1是拟南芥胚胎顶端区域正常分区和模式形成所必需的基因。由于BOB1功能缺失突变体胚胎致死,我们使用了一个部分功能缺失等位基因(bob1-3)来证明BOB1是生物体耐热性和胚后发育所必需的。重组BOB1蛋白作为分子伴侣发挥作用,并在体外防止模型蛋白底物聚集。在植物中,BOB1在基础温度下位于细胞质中,但在高温下形成含有典型小热激蛋白的热激颗粒。除了耐热性缺陷外,bob1-3在发育的各个阶段都表现出多效性发育缺陷。bob1-3的表型包括茎和根生长速率降低以及叶、花和花序分生组织中的模式缺陷。大多数真核伴侣蛋白在蛋白质合成过程中或细胞对变性应激的反应中在蛋白质折叠中发挥重要作用。据我们所知,我们的结果首次证明了一种植物小热激蛋白具有发育和耐热功能,并且可能在这两个折叠网络中都发挥作用。