Haseloff B J, Freeman T L, Valmeekam V, Melkus M W, Oner F, Valachovic M S, San Francisco M J
Department of Biological Sciences, Texas Tech University, Lubbock 79430, USA.
Mol Plant Microbe Interact. 1998 Apr;11(4):270-6. doi: 10.1094/MPMI.1998.11.4.270.
Galacturonic acid (GalUA) is a major component of pectin and polygalacturonic acid in the plant cell wall. In the phytopathogen Erwinia chrysanthemi, the uptake of molecules derived from degradation of these polymers is an important early step in the events preceding induction of pectinases, ultimately leading to plant tissue maceration. Uptake systems for GalUA and dimers of GalUA have been described and shown to be inducible in E. chrysanthemi. The GalUA uptake gene (exuT) was cloned and sequenced. Nucleotide sequence analysis identified an open reading frame encoding a 345-amino-acid polypeptide with a calculated mass of 37,825 Da. This polypeptide is predicted to be an integral membrane protein based on its high nonpolar amino acid content and hydropathic profile. Localization studies with the labeled polypeptide in the T7-RNA polymerase system also suggest that ExuT is a membrane protein. This evidence is further supported by the observation of hybrid ExuT-PhoA proteins in the bacterial cytoplasmic membrane following immunoblot analysis. Northern (RNA) analysis indicated that the gene is inducible in the presence of the monomer, GalUA. A targeted mutation in the exuT gene affected the utilization of GalUA as a role carbon source for growth. Maceration of potato tuber tissue by this mutant was delayed and reduced, when compared with the parental strain EC16.
半乳糖醛酸(GalUA)是植物细胞壁中果胶和聚半乳糖醛酸的主要成分。在植物病原菌菊欧文氏菌中,摄取这些聚合物降解产生的分子是诱导果胶酶之前一系列事件的重要早期步骤,最终导致植物组织浸解。已描述了GalUA和GalUA二聚体的摄取系统,并表明其在菊欧文氏菌中是可诱导的。克隆并测序了GalUA摄取基因(exuT)。核苷酸序列分析确定了一个开放阅读框,其编码一个345个氨基酸的多肽,计算分子量为37,825 Da。基于其高非极性氨基酸含量和疏水图谱,预测该多肽为整合膜蛋白。在T7 - RNA聚合酶系统中对标记多肽进行的定位研究也表明ExuT是一种膜蛋白。免疫印迹分析后在细菌细胞质膜中观察到杂合ExuT - PhoA蛋白,这一证据进一步支持了上述结论。Northern(RNA)分析表明,该基因在单体GalUA存在时是可诱导的。exuT基因中的靶向突变影响了GalUA作为生长的主要碳源的利用。与亲本菌株EC16相比,该突变体对马铃薯块茎组织的浸解作用延迟且减弱。