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AtMAC stabilizes the phragmoplast by crosslinking microtubules and actin filaments during cytokinesis
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作者 Pingzhou Du Yu liu +6 位作者 Lu Deng Dong Qian Xiuhua Xue Ting Yang tonghui li Yun Xiang Haiyun Ren 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2023年第8期1950-1965,共16页
The phragmoplast,a structure crucial for the completion of cytokinesis in plant cells,is composed of antiparallel microtubules(MTs)and actin filaments(AFs).However,how the parallel structure of phragmoplast MTs and AF... The phragmoplast,a structure crucial for the completion of cytokinesis in plant cells,is composed of antiparallel microtubules(MTs)and actin filaments(AFs).However,how the parallel structure of phragmoplast MTs and AFs is maintained,especially during centrifugal phragmoplast expansion,remains elusive.Here,we analyzed a new Arabidopsis thaliana MT and AF crosslinking protein(AtMAC).When AtMAC was deleted,the phragmoplast showed disintegrity during centrifugal expansion,and the resulting phragmoplast fragmentation led to incomplete cell plates.Overexpression of AtMAC increased the resistance of phragmoplasts to depolymerization and caused the formation of additional phragmoplasts during cytokinesis.Biochemical experiments showed that AtMAC crosslinked MTs and AFs in vitro,and the truncated AtMAC protein,N-CC1,was the key domain controlling the ability of AtMAC.Further analysis showed that N-CC1(51–154)is the key domain for binding MTs,and N-CC1(51–125)for binding AFs.In conclusion,AtMAC is the novel MT and AF crosslinking protein found to be involved in regulation of phragmoplast organization during centrifugal phragmoplast expansion,which is required for complete cytokinesis. 展开更多
关键词 actin filaments AtMAC CYTOKINESIS PHRAGMOPLAST MICROTUBULES
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胞泌复合体在植物中的功能研究进展 被引量:2
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作者 李彤辉 刘晓楠 +2 位作者 徐静 李师鹏 蒋苏 《植物学报》 CAS CSCD 北大核心 2019年第5期642-651,共10页
囊泡运输是真核生物的一种重要的细胞学活动,广泛参与多种生物学过程。该过程主要包括囊泡形成、转运、拴系及与目的膜融合4个环节。目前已知9种多蛋白亚基拴系复合体参与不同途径的胞内转运过程,其中,胞泌复合体(exocyst complex)介导... 囊泡运输是真核生物的一种重要的细胞学活动,广泛参与多种生物学过程。该过程主要包括囊泡形成、转运、拴系及与目的膜融合4个环节。目前已知9种多蛋白亚基拴系复合体参与不同途径的胞内转运过程,其中,胞泌复合体(exocyst complex)介导了运输囊泡与质膜的拴系过程。对胞泌复合体调控机制的认识主要源于酵母(Saccharomyces cerevisiae)和动物细胞的研究。近年来,植物胞泌复合体的研究也取得了较大进展,初步结果显示复合体在功能方面具有一些植物特异的调控特点,广泛参与植物生长发育和逆境响应。该文主要综述胞泌复合体在植物中的研究进展,旨在为植物胞泌复合体功能研究提供参考。 展开更多
关键词 囊泡运输 多蛋白亚基拴系复合体 胞泌复合体
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