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编码鲨烯合酶的拟南芥SQS1基因的克隆与特性分析——该酶C末端区域在鲨烯通过甾醇途径的通道化过程中的作用

Cloning and characterization of the Arabidopsis thaliana SQS1 gene encoding squalene synthase--involvement of the C-terminal region of the enzyme in the channeling of squalene through the sterol pathway.

作者信息

Kribii R, Arró M, Del Arco A, González V, Balcells L, Delourme D, Ferrer A, Karst F, Boronat A

机构信息

Laboratoire de Génétique Physiologique et Moléculaire, Institut de Biologie Moléculaire et d'Ingénierie Génétique, Université de Poitiers, France.

出版信息

Eur J Biochem. 1997 Oct 1;249(1):61-9. doi: 10.1111/j.1432-1033.1997.00061.x.

DOI:10.1111/j.1432-1033.1997.00061.x
PMID:9363754
Abstract

Squalene synthase (SQS) catalyzes the first committed step of the sterol biosynthetic pathway. A full-length Arabidopsis thaliana SQS cDNA has been isolated by combining library screening and PCR-based approaches. Arabidopsis SQS is encoded by a small gene family of two genes (SQS1 and SQS2) which are organized in a tandem array. SQS1 and SQS2 have an identical organization with regard to intron positions and exon sizes and encode SQS isoforms showing a high level of sequence conservation (79% identity and 88% similarity). The isolated cDNA has been assigned to the SQS1 gene product, SQS1. RNA blot analysis has shown that the 1.6-kb SQS1 mRNA is detected in all plant tissues analyzed (inflorescenses, leaves, stems and roots) although the transcript is especially abundant in roots. Arabidopsis SQS1 isoform is unable to complement the SQS-defective Saccharomyces cerevisiae strain 5302, although SQS activity was detected in the microsomal fraction of the transformed yeast strain. However, a chimeric SQS resulting from the replacement of the 66 C-terminal residues of the Arabidopsis enzyme by the 111 C-terminal residues of the Schizosaccharomyces pombe enzyme was able to confer ergosterol prototrophy to strain 5302. Labeling studies using [3H]farnesyl-P2 and microsomal fractions obtained from yeast strains expressing either Arabidopsis SQS1 or chimeric Arabidopsis/S. pombe SQS derivatives indicated that the C-terminal region of the enzyme is involved in the channeling of squalene through the yeast sterol pathway.

摘要

鲨烯合酶(SQS)催化甾醇生物合成途径的首个关键步骤。通过结合文库筛选和基于PCR的方法,已分离出全长拟南芥SQS cDNA。拟南芥SQS由一个包含两个基因(SQS1和SQS2)的小基因家族编码,这两个基因呈串联排列。SQS1和SQS2在 intron 位置和外显子大小方面具有相同的结构,并编码显示出高度序列保守性(79% 同一性和 88% 相似性)的SQS 异构体。分离出的 cDNA 已被指定为 SQS1 基因产物 SQS1。RNA 印迹分析表明,在所有分析的植物组织(花序、叶片、茎和根)中均检测到 1.6 kb 的 SQS1 mRNA,尽管该转录本在根中特别丰富。拟南芥SQS1 异构体无法互补 SQS 缺陷型酿酒酵母菌株 5302,尽管在转化酵母菌株的微粒体部分检测到了 SQS 活性。然而,由拟南芥酶的 66 个 C 末端残基被粟酒裂殖酵母酶的 111 个 C 末端残基取代而产生的嵌合 SQS 能够赋予菌株 5302 麦角固醇原养型。使用 [3H]法呢基-P2 和从表达拟南芥 SQS1 或嵌合拟南芥/粟酒裂殖酵母 SQS 衍生物的酵母菌株获得的微粒体部分进行的标记研究表明,该酶的 C 末端区域参与了鲨烯通过酵母甾醇途径的通道化。

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