Keller B, Lamb C J
Plant Biology Laboratory, Salk Institute for Biological Studies, La Jolla, California 92037.
Genes Dev. 1989 Oct;3(10):1639-46. doi: 10.1101/gad.3.10.1639.
A gene encoding a novel cell wall hydroxyproline-rich glycoprotein (HRGPnt3) was isolated from a genomic library of tobacco. The deduced protein (620 amino acids, Mr, 65,406) contains an amino-terminal hydrophobic signal peptide, is highly basic, and is rich in proline, although characteristic Ser-Pro4 repeats are found only beyond residue 204. At the carboxyl terminus, there is a 34-amino-acid unit repeated three times. Arginine is the predominant basic amino acid rather than lysine, as in other HRGPs. A second gene homologous to HRGPnt3 was revealed by Southern blot hybridization of tobacco genomic DNA. Northern blot hybridization identified a 1.9-kb transcript present at low levels in roots. To determine the underlying spatial pattern of expression, the HRGPnt3 promoter and the first 27 nucleotides of the open reading frame were fused to the beta-glucuronidase (GUS) reporter gene and transformed back into tobacco. Histochemical localization of GUS activity showed that the HRGPnt3 promoter was transiently induced in the pericycle and endodermis, specifically in the discrete, small subset of cells involved in the initiation of lateral roots. This pattern of expression, in cells destined to form the tip of the emerging lateral root, indicates that the encoded cell wall protein has a specialized structural function, possibly in the mechanical penetration of the cortex and epidermis of the main root, and that the HRGPnt3 promoter responds to an early morphogenetic signal for lateral root induction.
从烟草基因组文库中分离出一个编码新型细胞壁富含羟脯氨酸糖蛋白(HRGPnt3)的基因。推导的蛋白质(620个氨基酸,Mr为65406)含有一个氨基末端疏水信号肽,碱性很强,富含脯氨酸,不过仅在204位残基之后才发现典型的Ser-Pro4重复序列。在羧基末端,有一个34个氨基酸的单元重复了三次。与其他富含羟脯氨酸糖蛋白不同,精氨酸是主要的碱性氨基酸而非赖氨酸。通过烟草基因组DNA的Southern印迹杂交揭示了另一个与HRGPnt3同源的基因。Northern印迹杂交鉴定出在根中低水平存在的一个1.9kb转录本。为了确定潜在的表达空间模式,将HRGPnt3启动子和开放阅读框的前27个核苷酸与β-葡萄糖醛酸酶(GUS)报告基因融合,并转化回烟草中。GUS活性的组织化学定位表明,HRGPnt3启动子在中柱鞘和内皮层中被瞬时诱导,特别是在参与侧根起始的离散小细胞亚群中。这种在注定形成新出现侧根尖端的细胞中的表达模式表明,编码的细胞壁蛋白具有特殊的结构功能,可能在主根皮层和表皮的机械穿透中发挥作用,并且HRGPnt3启动子对侧根诱导的早期形态发生信号有响应。