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拟南芥和水稻中的氧化固醇结合蛋白(OSBPs)及其编码基因。

Oxysterol binding proteins (OSBPs) and their encoding genes in Arabidopsis and rice.

机构信息

Department of Biology, Washington University, Rebstock Hall, Room No. 202, Campus Box 1137, St. Louis, MO 63130, USA. pavan

出版信息

Steroids. 2011 Apr;76(5):524-9. doi: 10.1016/j.steroids.2011.01.007. Epub 2011 Jan 31.

Abstract

Cell wall deposition, biosynthesis of steroid hormones, and maintenance of membrane composition and integrity, are some of the crucial functions of sterols in plants. Followed by their synthesis in the endoplasmic reticulum, the sterols accumulate in the plasma membrane. The concept of sterol trafficking in plant cell is not well understood. The oxysterol binding proteins are implicated in sterol transport in non-plant systems. In the study, the oxysterol binding proteins in Arabidopsis and rice are described and classified. The Arabidopsis genome encodes 12 oxysterol binding proteins-related proteins (ORPs) as compared to 6 oxysterol binding proteins (OSBPs/ORPs) in rice. The protein alignment studies reveal that amino acid sequences for oxysterol binding proteins are relatively well conserved in Arabidopsis and rice. The rice OSBPs are classified based on their phylogenetic relationship with Arabidopsis ORPs. The sequence LOGO built on LOC_Os03g16690 indicated presence of fingerprint region of amino acids "EQVSHHPP" for Arabidopsis and rice OSBPs/ORPs. The organization of pleckstrin homology domain is identified in several OSBPs/ORPs in Arabidopsis and rice. The Arabidopsis oligonucleotide array data is explored to understand the expression patterns of ORPs under 17 different experimental conditions. The analysis showed the expression of ORPs in Arabidopsis is necessarily under the control of biotic stress, chemical, elicitor, hormone, light intensity, abiotic stress, and temperature conditions. The linear mean signal values for Arabidopsis ORPs revealed their relative expression patterns in different developmental stages. The genes for ORP3C and ORP3B are highly expressed in all developmental stages that were analyzed. The present study thus indicates crucial functional role of the individual members of this gene family in different environmental stress conditions.

摘要

甾醇在植物中的一些关键功能包括细胞壁沉积、类固醇激素的生物合成以及膜成分和完整性的维持。在它们在内质网中合成后,甾醇会在质膜中积累。甾醇在植物细胞中的运输概念尚未得到很好的理解。氧化固醇结合蛋白参与了非植物系统中的固醇运输。在本研究中,描述和分类了拟南芥和水稻中的氧化固醇结合蛋白。与水稻中的 6 个氧化固醇结合蛋白(OSBPs/ORPs)相比,拟南芥基因组编码了 12 个氧化固醇结合蛋白相关蛋白(ORPs)。蛋白比对研究表明,拟南芥和水稻中氧化固醇结合蛋白的氨基酸序列相对保守。根据与拟南芥 ORPs 的系统发育关系对水稻 OSBPs 进行分类。基于 LOC_Os03g16690 构建的序列 LOGO 表明,拟南芥和水稻 OSBPs/ORPs 存在氨基酸“EQVSHHPP”的指纹区域。在拟南芥和水稻的几个 OSBPs/ORPs 中鉴定出pleckstrin 同源结构域的组织。探索拟南芥的寡核苷酸阵列数据以了解 ORPs 在 17 种不同实验条件下的表达模式。分析表明,ORPs 在拟南芥中的表达必然受到生物胁迫、化学物质、诱导剂、激素、光照强度、非生物胁迫和温度条件的控制。拟南芥 ORPs 的线性平均信号值揭示了它们在不同发育阶段的相对表达模式。分析的所有发育阶段中,ORP3C 和 ORP3B 的基因表达水平都很高。因此,本研究表明该基因家族的各个成员在不同的环境胁迫条件下具有重要的功能作用。

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