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拮抗性jacalin相关凝集素调节拟南芥中内质网体类型β-葡萄糖苷酶复合物的大小。

Antagonistic jacalin-related lectins regulate the size of ER body-type beta-glucosidase complexes in Arabidopsis thaliana.

作者信息

Nagano Atsushi J, Fukao Yoichiro, Fujiwara Masayuki, Nishimura Mikio, Hara-Nishimura Ikuko

机构信息

Department of Botany, Graduate School of Science, Kyoto University, Sakyo-ku, Kyoto, 606-8502 Japan.

出版信息

Plant Cell Physiol. 2008 Jun;49(6):969-80. doi: 10.1093/pcp/pcn075. Epub 2008 May 8.

Abstract

PYK10/BGLU23 is a beta-glucosidase that is a major protein of ER bodies, which are endoplasmic reticulum (ER)-derived organelles that may be involved in defense systems. PYK10 has active and inactive forms. Active PYK10 molecules form large complexes with diameters ranging from 0.65 microm to > 70 microm. We identified three beta-glucosidases (PYK10, BGLU21 and BGLU22), five jacalin-related lectins (JALs) and a GDSL lipase-like protein (GLL) in the purified PYK10 complex. Expression levels of JALs and GLLs were lower in the nai1-1 mutant, which has no ER bodies, than in Col-0. The subcellular localization of PYK10 is predicted to be different from the localizations of JALs and GLLs. This suggests that PYK10 interacts with its partners (JALs and GLLs) when the subcellular structure is destroyed by pathogens. The PYK10 complex was found to be larger in the pbp1-1 and jal22-1 mutants than in Col-0, while it was smaller in the jal23-1, jal31-1 and jal31-2 mutants than in Col-0. These results show that two types of JALs having opposite roles regulate the size of the PYK10 complex antagonistically. We define the two types of lectins as a 'polymerizer-type lectin' and an 'inhibitor-type lectin'. Interestingly, the closest homologs of polymerizer-type lectins (JAL31 and JAL23) were inhibitor-type lectins (PBP1/JAL30 and JAL22). The pairs of polymerizer-type and inhibitor-type lectins reported here are good examples of genes that have evolved new functions after gene duplication (neofunctionalization).

摘要

PYK10/BGLU23是一种β-葡萄糖苷酶,是内质网体的主要蛋白质,内质网体是源自内质网(ER)的细胞器,可能参与防御系统。PYK10有活性和无活性两种形式。活性PYK10分子形成直径从0.65微米到大于70微米的大复合物。我们在纯化的PYK10复合物中鉴定出三种β-葡萄糖苷酶(PYK10、BGLU21和BGLU22)、五种jacalin相关凝集素(JALs)和一种GDSL脂肪酶样蛋白(GLL)。在没有内质网体的nai1-1突变体中,JALs和GLLs的表达水平低于Col-0。预测PYK10的亚细胞定位与JALs和GLLs的定位不同。这表明当亚细胞结构被病原体破坏时,PYK10与其伙伴(JALs和GLLs)相互作用。发现pbp1-1和jal22-1突变体中的PYK10复合物比Col-0中的大,而jal23-1、jal31-1和jal31-2突变体中的PYK10复合物比Col-0中的小。这些结果表明,具有相反作用的两种类型的JALs拮抗调节PYK10复合物的大小。我们将这两种类型的凝集素定义为“聚合型凝集素”和“抑制型凝集素”。有趣的是,聚合型凝集素(JAL31和JAL23)最接近的同源物是抑制型凝集素(PBP1/JAL30和JAL22)。这里报道的聚合型和抑制型凝集素对是基因复制后进化出新功能(新功能化)的基因的良好例子。

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