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16篇 您的检索式:作者名="Yalovsky"
    题名 作者 年代 出处 被引量
1S-acylation-dependent association of the calcium sensor CBL2 with the vacuolar membrane is essential for proper abscisic acid responses显示文摘Calcineurin 象 B 一样(CBL ) 蛋白质贡献由与交往 CBL 蛋白质 kinases (CIPK ) 交往译码钙信号。当前,几乎仍然功能和在 vacuolar 膜是局部性的 CBL 蛋白质的特定的指向机制没有信息。在这研究,我们集中于 CBL2,丰富的 vacuolar 从 Arabidopsis thaliana 的未知功能的膜局部性的钙传感器。我们证明 CBL2 指向的 vacuolar 被三半胱氨酸残余的 S-acylation 明确地在它的 N 终点和那 CBL2 S-acylation 引起并且指向由一条 Brefeldin A 感觉迟钝的小径发生。CBL2 功能的损失在种子萌芽期间并且仅仅充分使植物变为过分敏感到植物激素 abscisic 酸(骆驼毛的织物) S-acylated 和适当地指向 vacuolar 的 CBL2 蛋白质能补充这变异的显型。这些调查结果定义为蛋白质指向小径的 S-acylation-dependent vacuolar 膜并且揭开在骆驼毛的织物回答的 vacuolar 钙传感器的一个关键角色。Oliver Batistic Marion Rehers Amir Akerman Kathrin Schlucking Leonie Steinhorst Shaul Yalovsky Jorg Kudla 2012Cell Research2012,22,7:12
2Protein lipidmodifications in signaling and subcellular targeting 显示文摘SOREK N BLOCH D YALOVSKY S 2009Current Opinion in Plant Biology2009,12,6:1
3Protein Prenylation in Plants:Old Friends and New Targets显示文摘RODRIGUEZ-CONCEPCION M YALOVSKY S GRUISSEM W 1999Plant Mol Biol1999,39,:1
4Lipid modifications of proteins -slipping in and out of membranes 显示文摘Yalovsky S Rodriguez - Concepcion M Gruissem W 1999Trends Plant Sci1999,4,:1
5The analysis of protein-protein interactions in plants by bimolecular fluorescence complementation显示文摘Ohad N Shichrur K Yalovsky S 2007Plant Physiol2007,145,4:1
6The prenylation status of a novel plant calmodulin directs plasma membrane or nuclear localization of the protein显示文摘RODRIGUEZ-CONCEPCION M YALOVSKY S ZIK M 1999EMBO J1999,18,:1
7Lipid modifications of proteins - slipping in and out of membranes 显示文摘Yalovsky S Rodr Guez-Concepcion M Gruissem W 1999Trends Plant Sci1999,4,11:1
8Dual fatty acyl modification determines the localization and plasma membrane targeting of CBL/CIPK Ca2+ signaling complexes in Ara- bidopsis显示文摘BATISTIC O SOREK N SCHULTKE S YALOVSKY S KUDLA J 2008The Plant Cell2008,20,5:1
9Genome-scale proteomics reveals Arabidopsis thaliana gene models and proteome dynamics显示文摘Baerenfaller K Grossmann J Grobei MA Hull R HirschHoffmann M Yalovsky S Zimmermann P Grossniklaus U Gruissem W Baginsky S 0,,:1
10Calmodulins and calcineurin B-like proteins:calcium sensors for specific signal response coupling in plants显示文摘LUAN S KUDLA J RODRIGUEZ-CONCEPCION M YALOVSKY S GRUISSEM W 2002Plant Cell2002,,:1
11Prenylation of the floral transcription factor APETALAI modulates its function 显示文摘Yalovsky S Rodriguez-Concepci6n M Bracha K 2000The Plant Cell2000,12,8:1
12Lipid modifications of proteins-Slipping in and out of membranes显示文摘YALOVSKY S RODRIGUEZ-CONCEPCI6N M GRUISSEM W 1999Trends Plant Sci1999,4,:1
13Dual Fatty Acyl Modification Determines the Localization and Plasma Membrane Targeting of CBL/CIPK Ca^sup 2+^ Signaling Complexes in Arabidopsis(W)显示文摘Batistic Oliver Sorek Nadav Schültke Stefanie Yalovsky Shaul Kudla J?rg 2008Plant Cell2008,,5:1
14Calmodulins and calcineurin B-like proteins: Calcium sensors for specific signal response coupling in plants显示文摘Luan S Rodrignez-Concepcion M Yalovsky S 2002Plant Ce112002,14,:1
15The Glucose Breath Test: A Diagnostic Test for Small Bowel Stricture(s) in Crohn’s Disease显示文摘Daniel Mishkin Francis M. Boston David Blank Morty Yalovsky Seymour Mishkin 2002Digestive Diseases and Sciences2002,,3:1
16Arabidopsis SYP121 acts as an ROP2 effector in the regulation of root hair tip growth显示文摘Tip growth is an extreme form of polarized cell expansion that occurs in all eukaryotic kingdoms to generate highly elongated tubular cells with specialized functions, including fungal hyphae, animal neurons, plant pollen tubes, and root hairs (RHs). RHs are tubular structures that protrude from the root epidermis to facilitate water and nutrient uptake, microbial interactions, and plant anchorage. RH tip growth requires polarized vesicle targeting and active exocytosis at apical growth sites. However, how apical exocytosis is spatially and temporally controlled during tip growth remains elusive. Here, we report that the Qa-Soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) SYP121 acts as an effector of Rho of Plants 2 (ROP2), mediating the regulation of RH tip growth. We show that active ROP2 promotes SYP121 targeting to the apical plasma membrane. Moreover, ROP2 directly interacts with SYP121 and promotes the interaction between SYP121 and the R-SNARE VAMP722 to form a SNARE complex, probably by facilitating the release of the Sec1/Munc18 protein SEC11, which suppresses the function of SYP121. Thus, the ROP2-SYP121 pathway facilitates exocytic trafficking during RH tip growth. Our study uncovers a direct link between an ROP GTPase and vesicular trafficking and a new mechanism for the control of apical exocytosis, whereby ROP GTPase signaling spatially regulates SNARE complex assembly and the polar distribution of a Q-SNARE.Xiankui Cui Shuwei Wang Yaohui Huang Xuening Ding Zirong Wang Lidan Zheng Yujing Bi Fanghui Ge Lei Zhu Ming Yuan Shaul Yalovsky Ying Fu 2022Molecular Plant2022,15,6:0
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