IRHS, Agrocampus-Ouest, INRA, Université d'Angers, SFR 4207 Quasav, 42 rue George Morel, 49071 Beaucouzé, France.
Int J Mol Sci. 2019 Dec 21;21(1):97. doi: 10.3390/ijms21010097.
The small heat shock proteins (sHSPs) are molecular chaperones that share an alpha-crystallin domain but display a high diversity of sequence, expression, and localization. They are especially prominent in plants, populating most cellular compartments. In pea, mitochondrial HSP22 is induced by heat or oxidative stress in leaves but also strongly accumulates during seed development. The molecular function of HSP22 was addressed by studying the effect of temperature on its structural properties and chaperone effects using a recombinant or native protein. Overexpression of HSP22 significantly increased bacterial thermotolerance. The secondary structure of the recombinant protein was not affected by temperature in contrast with its quaternary structure. The purified protein formed large polydisperse oligomers that dissociated upon heating (42 °C) into smaller species (mainly monomers). The recombinant protein appeared thermosoluble but precipitated with thermosensitive proteins upon heat stress in assays either with single protein clients or within complex extracts. As shown by in vitro protection assays, HSP22 at high molar ratio could partly prevent the heat aggregation of rhodanese but not of malate dehydrogenase. HSP22 appears as a holdase that could possibly prevent the aggregation of some proteins while co-precipitating with others to facilitate their subsequent refolding by disaggregases or clearance by proteases.
小分子热休克蛋白(sHSPs)是分子伴侣,它们共享一个α-晶状体蛋白结构域,但表现出高度多样化的序列、表达和定位。它们在植物中尤为突出,分布在大多数细胞区室中。在豌豆中,线粒体 HSP22 会被叶片的热或氧化应激诱导,但在种子发育过程中也会强烈积累。通过研究温度对重组或天然蛋白结构特性和伴侣效应的影响,研究了 HSP22 的分子功能。HSP22 的过表达显著提高了细菌的耐热性。与四级结构相比,重组蛋白的二级结构不受温度影响。该纯化蛋白形成大的多分散性寡聚物,在加热(42°C)时解聚成较小的物种(主要是单体)。重组蛋白表现出热可溶性,但在单一蛋白客户或复杂提取物的测定中,在热应激时与热敏蛋白一起沉淀。如体外保护试验所示,高摩尔比的 HSP22 可以部分防止硫氰酸酶的热聚集,但不能防止苹果酸脱氢酶的聚集。HSP22 似乎是一种持留酶,它可以防止一些蛋白质的聚集,同时与其他蛋白质共沉淀,以促进它们随后由解聚酶重折叠或由蛋白酶清除。