巴西橡胶树顺戊烯基转移酶cDNA的克隆、表达及特性分析。参与天然橡胶生物合成的关键因子。

Kasem Asawatreratanakul, Yuan-Wei Zhang, Dhirayos Wititsuwannakul, Rapepun Wititsuwannakul, Seiji Takahashi, Atiya Rattanapittayaporn, Tanetoshi Koyama
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引用次数: 154

摘要

从巴西橡胶树中提取的天然橡胶是一种具有顺式结构的异戊二烯单元的高分子聚合物。负责异戊二烯顺式-1,4聚合的酶已被确定为颗粒结合橡胶转移酶,但尚未从橡胶生产植物中克隆出编码该酶的基因。利用最近克隆的顺-戊烯基链延长酶保守区序列信息,从巴西橡胶树中分离并鉴定了参与天然橡胶生物合成的功能因子cdna。序列分析表明,顺-戊烯基链延长酶的5个高度保守区全部存在于顺-戊烯基转移酶的蛋白序列中。Northern blot分析表明,与其他Hevea组织相比,胶乳中主要表达了顺戊烯基转移酶。利用在大肠杆菌中过表达的重组基因产物对橡胶转移酶进行了体外实验,结果表明该酶能催化形成大小约为2 × 103-1 × 104 Da的长链聚戊烯基产物。此外,在乳胶洗涤后的底层颗粒存在下,橡胶转移酶活性提高,生产高分子尺寸的橡胶制品。这些结果表明,橡胶树顺式戊烯基转移酶可能需要在洗涤后的底部颗粒中存在一定的激活因子,以生产高分子量橡胶。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular cloning, expression and characterization of cDNA encoding cis-prenyltransferases from Hevea brasiliensis. A key factor participating in natural rubber biosynthesis.

Natural rubber from Hevea brasiliensis is a high molecular mass polymer of isoprene units with cis-configuration. The enzyme responsible for the cis-1,4-polymerization of isoprene units has been idengified as a particle-bound rubber transferase, but no gene encoding this enzyme has been cloned from rubber-producing plants. By using sequence information from the conserved regions of cis-prenyl chain elongating enzymes that were cloned recently, we have isolated and characterized cDNAs from H. brasiliensis for a functional factor participating in natural rubber biosynthesis. Sequence analysis revealed that all of the five highly conserved regions among cis-prenyl chain elongating enzymes were found in the protein sequences of the Hevea cis-prenyltransferase. Northern blot analysis indicated that the transcript(s) of the Hevea cis-prenyltransferase were expressed predominantly in the latex as compared with other Hevea tissues examined. In vitro rubber transferase assays using the recombinant gene product overexpressed in Escherichia coli revealed that the enzyme catalyzed the formation of long chain polyprenyl products with approximate sizes of 2 x 103-1 x 104 Da. Moreover, in the presence of washed bottom fraction particles from latex, the rubber transferase activity producing rubber product of high molecular size was increased. These results suggest that the Hevea cis-prenyltransferase might require certain activation factors in the washed bottom fraction particles for the production of high molecular mass rubber.

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