Höfte H, Hubbard L, Reizer J, Ludevid D, Herman E M, Chrispeels M J
Department of Biology and Center for Molecular Genetics, University of California, San Diego, La Jolla, California 92093-0116.
Plant Physiol. 1992 Jun;99(2):561-70. doi: 10.1104/pp.99.2.561.
Reports from a number of laboratories describe the presence of a family of proteins (the major intrinsic protein family) in a variety of organisms. These proteins are postulated to form channels that function in metabolite transport. In plants, this family is represented by the product of NOD26, a nodulation gene in soybean that encodes a protein of the peribacteroid membrane, and tonoplast intrinsic protein (TIP), an abundant protein in the tonoplast of protein storage vacuoles of bean seeds (KD Johnson, H Höfte, MJ Chrispeels [1990] Plant Cell 2: 525-532). Other homologs that are induced by water stress in pea and in Arabidopsis thaliana and that are expressed in the roots of tobacco have been reported, but the location of the proteins they encode is not known. We now report the presence and derived amino acid sequences of two different TIP proteins in A. thaliana. alpha-TIP is a seed-specific protein that has 68% amino acid sequence identity with bean seed TIP; gamma-TIP is expressed in the entire vegetative body of A. thaliana and has 58% amino acid identity with bean seed TIP. Both proteins are associated with the tonoplast. Comparisons of the derived amino acid sequences of the seven known plant proteins in the major intrinsic protein family show that genes with similar expression patterns (e.g. water stress-induced or seed specific) are more closely related to each other than the three A. thaliana homologs are related. We propose that the nonoverlapping gene expression patterns reported here, and the evolutionary relationships indicated by the phylogenetic tree, suggest a functional specialization of these proteins.
多个实验室的报告描述了多种生物体中存在一类蛋白质(主要内在蛋白家族)。据推测,这些蛋白质形成了在代谢物运输中起作用的通道。在植物中,这个家族由大豆中的一个结瘤基因NOD26的产物以及液泡膜内在蛋白(TIP)代表,NOD26编码一种类菌体周膜蛋白,而TIP是菜豆种子蛋白储存液泡的液泡膜中的一种丰富蛋白(KD·约翰逊、H·霍夫特、MJ·克里斯皮尔斯[1990]《植物细胞》2:525 - 532)。已经报道了豌豆和拟南芥中受水分胁迫诱导且在烟草根部表达的其他同源物,但它们所编码蛋白质的位置尚不清楚。我们现在报告拟南芥中两种不同TIP蛋白的存在及其推导的氨基酸序列。α - TIP是一种种子特异性蛋白,与菜豆种子TIP具有68%的氨基酸序列同一性;γ - TIP在拟南芥的整个营养体中表达,与菜豆种子TIP具有58%的氨基酸同一性。这两种蛋白都与液泡膜相关。对主要内在蛋白家族中七个已知植物蛋白的推导氨基酸序列进行比较表明,具有相似表达模式(如水分胁迫诱导或种子特异性)的基因彼此之间的关系比拟南芥的三个同源物之间的关系更为密切。我们提出,这里报道的不重叠的基因表达模式以及系统发育树所表明的进化关系,暗示了这些蛋白质的功能特化。