Suzuki T C, Krawitz D C, Vierling E
Department of Biochemistry, University of Arizona, Tucson, Arizona 85721-0106, USA.
Plant Physiol. 1998 Mar;116(3):1151-61. doi: 10.1104/pp.116.3.1151.
Plants synthesize several classes of small (15- to 30-kD monomer) heat-shock proteins (sHSPs) in response to heat stress, including a nuclear-encoded, chloroplast-localized sHSP (HSP21). Cytosolic sHSPs exist as large oligomers (approximately 200-800 kD) composed solely or primarily of sHSPs. Phosphorylation of mammalian sHSPs causes oligomer dissociation, which appears to be important for regulation of sHSP function. We examined the native structure and phosphorylation of chloroplast HSP21 to understand this protein's basic properties and to compare it with cytosolic sHSPs. The apparent size of native HSP21 complexes was > 200 kD and they did not dissociate during heat stress. We found no evidence that HSP21 or the plant cytosolic sHSPs are phosphorylated in vivo. A partial HSP21 complex purified from heat-stressed pea (Pisum sativum L.) leaves contained no proteins other than HSP21. Mature recombinant pea and Arabidopsis thaliana HSP21 were expressed in Escherichia coli, and purified recombinant Arabidopsis HSP21 assembled into homo-oligomeric complexes with the same apparent molecular mass as HSP21 complexes observed in heat-stressed leaf tissue. We propose that the native, functional form of chloroplast HSP21 is a large, oligomeric complex containing nine or more HSP21 subunits, and that plant sHSPs are not regulated by phosphorylation-induced dissociation.
植物在热胁迫下会合成几类小分子量(15 - 30 kDa单体)的热休克蛋白(sHSPs),其中包括一种核编码、定位于叶绿体的sHSP(HSP21)。胞质sHSPs以大的寡聚体形式存在(约200 - 800 kDa),其仅由sHSPs组成或主要由sHSPs组成。哺乳动物sHSPs的磷酸化会导致寡聚体解离,这似乎对sHSP功能的调节很重要。我们研究了叶绿体HSP21的天然结构和磷酸化情况,以了解该蛋白的基本特性,并将其与胞质sHSPs进行比较。天然HSP21复合物的表观大小大于200 kDa,并且在热胁迫期间它们不会解离。我们没有发现证据表明HSP21或植物胞质sHSPs在体内被磷酸化。从热胁迫的豌豆(Pisum sativum L.)叶片中纯化得到的部分HSP21复合物除了HSP21外不含有其他蛋白质。成熟的重组豌豆和拟南芥HSP21在大肠杆菌中表达,纯化的重组拟南芥HSP21组装成同型寡聚复合物,其表观分子量与在热胁迫叶片组织中观察到的HSP21复合物相同。我们提出叶绿体HSP21的天然功能形式是一种包含九个或更多HSP21亚基的大的寡聚复合物,并且植物sHSPs不受磷酸化诱导的解离调节。