Gutkowska Malgorzata, Wnuk Marta, Nowakowska Julita, Lichocka Malgorzata, Stronkowski Michal M, Swiezewska Ewa
Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawińskiego 5a, 02-106 Warsaw, Poland
Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawińskiego 5a, 02-106 Warsaw, Poland.
J Exp Bot. 2015 Jan;66(1):213-24. doi: 10.1093/jxb/eru412. Epub 2014 Oct 14.
Rab proteins, key players in vesicular transport in all eukaryotic cells, are post-translationally modified by lipid moieties. Two geranylgeranyl groups are attached to the Rab protein by the heterodimeric enzyme Rab geranylgeranyl transferase (RGT) αβ. Partial impairment in this enzyme activity in Arabidopsis, by disruption of the AtRGTB1 gene, is known to influence plant stature and disturb gravitropic and light responses. Here it is shown that mutations in each of the RGTB genes cause a tip growth defect, visible as root hair and pollen tube deformations. Moreover, FM 1-43 styryl dye endocytosis and recycling are affected in the mutant root hairs. Finally, it is demonstrated that the double mutant, with both AtRGTB genes disrupted, is non-viable due to absolute male sterility. Doubly mutated pollen is shrunken, has an abnormal exine structure, and shows strong disorganization of internal membranes, particularly of the endoplasmic reticulum system.
Rab蛋白是所有真核细胞中囊泡运输的关键参与者,其在翻译后会被脂质部分修饰。异二聚体酶Rab香叶基香叶基转移酶(RGT)αβ会将两个香叶基香叶基基团连接到Rab蛋白上。已知在拟南芥中,通过破坏AtRGTB1基因导致该酶活性部分受损,会影响植株高度并扰乱重力和光反应。本文表明,每个RGTB基因的突变都会导致顶端生长缺陷,表现为根毛和花粉管变形。此外,突变的根毛中FM 1-43苯乙烯基染料的内吞作用和循环受到影响。最后,证明了两个AtRGTB基因均被破坏的双突变体由于绝对雄性不育而无法存活。双突变花粉萎缩,外壁结构异常,内膜尤其是内质网系统严重紊乱。