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Heat stress induces the synthesis of a new form of ribulose-1,5-bisphosphate carboxylase/oxygenase activase in cotton leaves

机译:热胁迫诱导棉花叶片中新形式的核糖-1,5-双磷酸羧化酶/加氧酶激活酶的合成

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Ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco; EC 4.1.1.39) activase mRNA and protein synthesis were measured in the leaves of cotton (Gossypium hirsutum L.) plants under control (28 °C) or heat-stress (41 °C) conditions. A decline in activase transcript abundance occurred rapidly during the photoperiod and was unaffected by heat stress. In response to high temperature, de novo protein synthesis rapidly shifted from mainly expression of Rubisco large and small subunits to the major heat-shock proteins, while de novo synthesis of the constitutively expressed 47- and 43-kDa activase polypeptides was not appreciably altered. However, heat stress induced the synthesis of a 46-kDa polypeptide that immunoprecipitated with antibodies monospecific to activase. Expression of the 46-kDa polypeptide ceased within 1 h of the return of heat-stressed plants to control conditions. Activase precursors of 55 and 51 kDa were detected among the in vitro translation products of RNA from control and heat-stressed plants. In addition, a 53-kDa polypeptide that also immunoprecipitated with anti-activase IgG was among the in vitro translation products of RNA from heat-stressed plants. This putative activase precursor did not occur among the in vitro translation products of RNA from plants that had recovered from heat stress. The levels of the constitutive 47- and 43-kDa activase polypeptides were similar in control and heat-stressed plants, based on immunoblotting with antibodies to activase. However, a 46-kDa cross-reacting polypeptide was also present in heat-stressed plants and constituted about 5% of the total activase after 48 h at high temperature. The identity of the heat-induced 46-kDa polypeptide as activase was confirmed by protein sequencing, which showed that its N-terminal sequence was identical to that of the constitutive 47-kDa activase polypeptide. The presence of multiple isoforms for both the 47- and 43-kDa activase polypeptides on immunoblots of two-dimensional gels and the complex banding pattern on Southern blots together suggest the existence of more than one activase gene and the possibility that the synthesis of the heat-induced activase polypeptide may be regulated transcriptionally. Induction of a new form of activase may constitute a mechanism of photosynthetic acclimation to heat stress in cotton.
机译:在控制(28°C)或热胁迫(41)下的棉(Gossypium hirsutum L.)植物叶片中测量了1,5-双磷酸核糖羧化酶/加氧酶(Rubisco; EC 4.1.1.39)活化酶的mRNA和蛋白质合成。 °C)条件。活化酶转录物丰度的下降在光周期中迅速发生,并且不受热应激的影响。响应高温,从头蛋白合成迅速从主要表达Rubisco大亚基和小亚基转变为主要的热休克蛋白,而组成型表达的47-和43-kDa活化酶多肽的从头合成没有明显改变。但是,热应激诱导了46kDa多肽的合成,该多肽用对激活酶单特异性的抗体免疫沉淀。 46 kDa多肽的表达在热胁迫植物恢复控制条件后1小时内停止。在来自对照和热胁迫植物的RNA的体外翻译产物中检测到55和51kDa的活化酶前体。另外,还用抗活化酶IgG免疫沉淀的53kDa多肽是来自热胁迫植物的RNA的体外翻译产物。该假定的活化酶前体未出现在从热胁迫中回收的植物的RNA的体外翻译产物中。基于用激活酶抗体进行的免疫印迹,在对照植物和热胁迫植物中,组成型47-kDa和43-kDa激活酶多肽的水平相似。但是,在高温胁迫下的植物中也存在46 kDa的交叉反应多肽,在高温下48 h后约占总活化酶的5%。通过蛋白测序证实了热诱导的46-kDa多肽作为活化酶的身份,这表明其N-末端序列与组成性47-kDa活化酶多肽的相同。二维凝胶免疫印迹上47-kDa和43-kDa激活酶多肽均存在多种同工型,Southern印迹上的复杂条带模式共同表明存在多个激活酶基因,并且有可能合成热诱导的活化酶多肽可以被转录调控。诱导新形式的激活酶可能构成光合作用适应棉花热胁迫的机制。

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