Johnson Cynthia D, Chary S Narasimha, Chernoff Ellen A, Zeng Qin, Running Mark P, Crowell Dring N
Department of Biology, Indiana University-Purdue University, Indianapolis, 46202-5132, USA.
Plant Physiol. 2005 Oct;139(2):722-33. doi: 10.1104/pp.105.065045. Epub 2005 Sep 23.
Arabidopsis (Arabidopsis thaliana) mutants lacking a functional ERA1 gene, which encodes the beta-subunit of protein farnesyltransferase (PFT), exhibit pleiotropic effects that establish roles for protein prenylation in abscisic acid (ABA) signaling and meristem development. Here, we report the effects of T-DNA insertion mutations in the Arabidopsis GGB gene, which encodes the beta-subunit of protein geranylgeranyltransferase type I (PGGT I). Stomatal apertures of ggb plants were smaller than those of wild-type plants at all concentrations of ABA tested, suggesting that PGGT I negatively regulates ABA signaling in guard cells. However, germination of ggb seeds in response to ABA was similar to the wild type. Lateral root formation in response to exogenous auxin was increased in ggb seedlings compared to the wild type, but no change in auxin inhibition of primary root growth was observed, suggesting that PGGT I is specifically involved in negative regulation of auxin-induced lateral root initiation. Unlike era1 mutants, ggb mutants exhibited no obvious developmental phenotypes. However, era1 ggb double mutants exhibited more severe developmental phenotypes than era1 mutants and were indistinguishable from plp mutants lacking the shared alpha-subunit of PFT and PGGT I. Furthermore, overexpression of GGB in transgenic era1 plants partially suppressed the era1 phenotype, suggesting that the relatively weak phenotype of era1 plants is due to partial redundancy between PFT and PGGT I. These results are discussed in the context of Arabidopsis proteins that are putative substrates of PGGT I.
拟南芥(Arabidopsis thaliana)中缺乏功能性ERA1基因(该基因编码蛋白质法尼基转移酶(PFT)的β亚基)的突变体表现出多效性效应,这些效应确立了蛋白质异戊二烯化在脱落酸(ABA)信号传导和分生组织发育中的作用。在此,我们报道了拟南芥GGB基因(该基因编码I型蛋白质香叶基香叶基转移酶(PGGT I)的β亚基)中T-DNA插入突变的影响。在所有测试的ABA浓度下,ggb植株的气孔孔径均小于野生型植株,这表明PGGT I在保卫细胞中负调控ABA信号传导。然而,ggb种子对ABA的萌发反应与野生型相似。与野生型相比,ggb幼苗对外源生长素的侧根形成增加,但未观察到生长素对主根生长抑制的变化,这表明PGGT I特异性参与生长素诱导的侧根起始的负调控。与era1突变体不同,ggb突变体没有明显的发育表型。然而,era1 ggb双突变体表现出比era1突变体更严重的发育表型,并且与缺乏PFT和PGGT I共享的α亚基的plp突变体无法区分。此外,在转基因era1植株中过表达GGB部分抑制了era1表型,这表明era1植株相对较弱的表型是由于PFT和PGGT I之间的部分冗余。我们在拟南芥中作为PGGT I假定底物的蛋白质背景下讨论了这些结果。