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定点突变对菠菜核酮糖-1,5-二磷酸羧化酶/加氧酶激活酶活性的影响。

Alteration of spinach ribulose-1,5-bisphosphate carboxylase/oxygenase activase activities by site-directed mutagenesis.

机构信息

Department of Agronomy, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801-3838.

出版信息

Plant Physiol. 1992 Jul;99(3):1201-7. doi: 10.1104/pp.99.3.1201.

Abstract

Site-directed mutagenesis was performed on the 1.6 and 1.9 kilobase spinach (Spinacea oleracea) ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) activase cDNAs, encoding the 41 and 45 kilodalton (kD) isoforms of the enzyme, to create single amino acid changes in the putative ATP-binding site of Rubisco activase (Lys-107, Gln-109, and Ser-112) and in an unrelated cysteine residue (Cys-256). Replacement of Lys-107 with Met produced soluble protein with reduced Rubisco activase and ATPase activities in both isoforms. Substituting Ala or Arg for Lys-107 produced insoluble proteins. Rubisco activase activity increased in the 41-kD isoform when Gln-109 was changed to Glu, but activity in the 45-kD isoform was similar to the wild-type enzyme. ATPase activity in the Glu-109 mutations did not parallel the changes in Rubisco activase activity. Rather, a higher ratio of Rubisco activase to ATPase activity occurred in both isoforms. The mutation of Gln-109 to Lys inactivated Rubisco activase activity. Replacement of Ser-112 with Pro created an inactive protein, whereas attempts to replace Ser-112 with Thr were not successful. The mutation of Cys-256 to Ser in the 45-kD isoform reduced both Rubisco activase and ATPase activities. The results indicate that the two activities of Rubisco activase are not tightly coupled and that variations in photosynthetic efficiency may occur in vivo by replacing the wild-type enzyme with mutant enzymes.

摘要

定点突变在菠菜(Spinacea oleracea)核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)激活酶的 1.6 和 1.9 千碱基 cDNA 上进行,该酶编码酶的 41 和 45 千道尔顿(kD)同工型,在 Rubisco 激活酶的假定 ATP 结合位点(Lys-107、Gln-109 和 Ser-112)和一个不相关的半胱氨酸残基(Cys-256)中产生单个氨基酸变化。用 Met 取代 Lys-107 产生可溶性蛋白,两种同工型的 Rubisco 激活酶和 ATP 酶活性降低。用 Ala 或 Arg 取代 Lys-107 会产生不溶性蛋白。当 Gln-109 变为 Glu 时,41-kD 同工型的 Rubisco 激活酶活性增加,但 45-kD 同工型的活性与野生型酶相似。Glu-109 突变中的 ATP 酶活性与 Rubisco 激活酶活性的变化不一致。相反,两种同工型的 Rubisco 激活酶与 ATP 酶的活性比值更高。Gln-109 突变为 Lys 会使 Rubisco 激活酶失活。用 Pro 取代 Ser-112 会产生无活性的蛋白质,而用 Thr 取代 Ser-112 的尝试则不成功。在 45-kD 同工型中,Cys-256 突变为 Ser 会降低 Rubisco 激活酶和 ATP 酶的活性。结果表明,Rubisco 激活酶的两种活性没有紧密偶联,并且通过用突变酶代替野生型酶,体内的光合作用效率可能会发生变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1db3/1080603/4f5f7eaa1c04/plntphys00707-0422-a.jpg

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