Hsieh Ming-Hsiun, Goodman Howard M
Department of Genetics, Harvard Medical School, and Department of Molecular Biology, Massachusetts General Hospital, Boston, Massachusetts 02114, USA.
Plant Physiol. 2002 Dec;130(4):1797-806. doi: 10.1104/pp.007484.
In bacteria, the regulatory ACT domains serve as amino acid-binding sites in some feedback-regulated amino acid metabolic enzymes. We have identified a novel type of ACT domain-containing protein family in Arabidopsis whose members contain ACT domain repeats (the "ACR" protein family). There are at least eight ACR genes located on each of the five chromosomes in the Arabidopsis genome. Gene structure comparisons indicate that the ACR gene family may have arisen by gene duplications. Northern-blot analysis indicates that each member of the ACR gene family has a distinct expression pattern in various organs from 6-week-old Arabidopsis. Moreover, analyses of an ACR3 promoter-beta-glucuronidase (GUS) fusion in transgenic Arabidopsis revealed that the GUS activity formed a gradient in the developing leaves and sepals, whereas low or no GUS activity was detected in the basal regions. In 2-week-old Arabidopsis seedlings grown in tissue culture, the expression of the ACR gene family is differentially regulated by plant hormones, salt stress, cold stress, and light/dark treatment. The steady-state levels of ACR8 mRNA are dramatically increased by treatment with abscisic acid or salt. Levels of ACR3 and ACR4 mRNA are increased by treatment with benzyladenine. The amino acid sequences of Arabidopsis ACR proteins are most similar in the ACT domains to the bacterial sensor protein GlnD. The ACR proteins may function as novel regulatory or sensor proteins in plants.
在细菌中,调节性ACT结构域在一些反馈调节的氨基酸代谢酶中作为氨基酸结合位点。我们在拟南芥中鉴定出了一种新型的含ACT结构域的蛋白质家族,其成员含有ACT结构域重复序列(“ACR”蛋白质家族)。拟南芥基因组的五条染色体上每条至少有八个ACR基因。基因结构比较表明,ACR基因家族可能是通过基因复制产生的。Northern杂交分析表明,ACR基因家族的每个成员在6周龄拟南芥的各个器官中都有独特的表达模式。此外,对转基因拟南芥中ACR3启动子 - β - 葡萄糖醛酸酶(GUS)融合体的分析显示,GUS活性在发育中的叶片和萼片中形成梯度,而在基部区域检测到低或无GUS活性。在组织培养中生长的2周龄拟南芥幼苗中,ACR基因家族的表达受植物激素、盐胁迫、冷胁迫和光/暗处理的差异调节。用脱落酸或盐处理可使ACR8 mRNA的稳态水平显著增加。用苄基腺嘌呤处理可使ACR3和ACR4 mRNA的水平增加。拟南芥ACR蛋白的氨基酸序列在ACT结构域中与细菌传感蛋白GlnD最相似。ACR蛋白可能在植物中作为新型调节或传感蛋白发挥作用。