Zheng Q, Simel E J, Klein P E, Royer M T, Houtz R L
Plant Physiology/Biochemistry/Molecular Biology Program, University of Kentucky, Lexington, Kentucky, 40546, USA.
Protein Expr Purif. 1998 Oct;14(1):104-12. doi: 10.1006/prep.1998.0936.
Ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) large subunit (LS) Nepsilon-methyltransferase (Rubisco LSMT, EC 2.1.1.127) catalyzes methylation of the LS of Rubisco. A pea (Pisum sativum L. cv Laxton's Progress No. 9) Rubisco LSMT cDNA was expressed in Escherichia coli, but most of the expressed protein was found in the insoluble fraction as an inclusion body. Expression at lower temperatures increased the level of soluble Rubisco LSMT and the associated enzymatic activity. However, the soluble form of Rubisco LSMT occurred as two molecular mass forms with the lower molecular mass suggestive of N-terminal processing at Ser-37. Deletion of 108 nucleotides from the 5' end encoding the N-terminal 36 amino acids of Rubisco LSMT resulted in a 10-fold increase in solubility and activity. Further addition of a 3' nucleotide sequence coding for a hexahistidyl carboxy-terminal peptide enabled purification of the N-terminally truncated Rubisco LSMT to homogeneity. Five milligrams of pure recombinant Rubisco LSMT was obtained from a 1-liter E. coli cell culture. The apparent kinetic constants for recombinant Rubisco LSMT for spinach Rubisco and AdoMet were only slightly different from the constants determined using affinity-purified native Rubisco LSMT from pea chloroplasts. However, there was a 6- to 7-fold reduction in the kcat for Rubisco LSMT, which was apparently a consequence of catalytic inactivation due to exposure to NiSO4 during purification. The availability of larger quantities of purified Rubisco LSMT should enable studies of the structure-function relationships in Rubisco LSMT and moreover its interaction with Rubisco.
1,5 - 二磷酸核酮糖羧化酶/加氧酶(Rubisco)大亚基(LS)Nε - 甲基转移酶(Rubisco LSMT,EC 2.1.1.127)催化Rubisco大亚基的甲基化反应。豌豆(Pisum sativum L. cv Laxton's Progress No. 9)Rubisco LSMT cDNA在大肠杆菌中表达,但大部分表达的蛋白以包涵体形式存在于不溶性部分。在较低温度下表达可提高可溶性Rubisco LSMT的水平及相关酶活性。然而,可溶性Rubisco LSMT以两种分子量形式存在,较低分子量形式表明在Ser - 37处发生了N端加工。从编码Rubisco LSMT N端36个氨基酸的5'端缺失108个核苷酸,导致溶解度和活性增加了10倍。进一步添加编码六组氨酸羧基末端肽的3'核苷酸序列,可将N端截短的Rubisco LSMT纯化至同质。从1升大肠杆菌细胞培养物中获得了5毫克纯重组Rubisco LSMT。重组Rubisco LSMT对菠菜Rubisco和腺苷甲硫氨酸(AdoMet)的表观动力学常数与使用从豌豆叶绿体中亲和纯化的天然Rubisco LSMT测定的常数仅略有不同。然而,Rubisco LSMT的催化常数(kcat)降低了6至7倍,这显然是由于纯化过程中暴露于NiSO4导致催化失活的结果。大量纯化的Rubisco LSMT的可得性应有助于研究Rubisco LSMT的结构 - 功能关系及其与Rubisco的相互作用。