Matsuda N, Nakano A
Molecular Membrane Biology Laboratory, RIKEN (The Institute of Physical and Chemical Research), Saitama, Japan.
Plant Cell Physiol. 1998 May;39(5):545-54. doi: 10.1093/oxfordjournals.pcp.a029403.
To identify molecules that function in the plant secretory pathway, we screened for Arabidopsis thaliana cDNA clones that complement the temperature-sensitive (ts), secretion-deficient sec15 mutation of yeast Saccharomyces cerevisiae. RMA1, one of the genes obtained in this screening, suppressed not only the ts growth of sec15 but also its secretory defect. RMA1 is not a structural homologue of SEC15 but encodes a novel 28 kDa protein with a RING finger motif and a C-terminal membrane-anchoring domain. Mutational analysis indicates that the RING finger motif of RMA1 is important for its suppression activity. In Arabidopsis plant, RMA1 is ubiquitously expressed. A search for homologous proteins in the database revealed that Arabidopsis, nematode, mouse and human possess close homologues of RMA1.
为了鉴定在植物分泌途径中起作用的分子,我们筛选了拟南芥cDNA克隆,这些克隆可互补酿酒酵母温度敏感型(ts)、分泌缺陷型sec15突变体。在此筛选中获得的基因之一RMA1,不仅抑制了sec15的ts生长,还抑制了其分泌缺陷。RMA1不是SEC15的结构同源物,而是编码一种具有环指基序和C末端膜锚定结构域的新型28 kDa蛋白。突变分析表明,RMA1的环指基序对其抑制活性很重要。在拟南芥植物中,RMA1广泛表达。在数据库中搜索同源蛋白发现,拟南芥、线虫、小鼠和人类都拥有RMA1的紧密同源物。