Saint-Jore-Dupas Claude, Gilbert Marie-Agnès, Ramis Catalina, Paris Nadine, Kiefer-Meyer Marie-Christine, Neuhaus Jean-Marc, Faye Loïc, Gomord Véronique
CNRS UMR 6037, IFRMP 23, GDR 2590, Université de Rouen, UFR des Sciences, Bâtiment Extension Biologie, Mont-Saint-Aignan, France.
Plant Cell Physiol. 2005 Oct;46(10):1603-12. doi: 10.1093/pcp/pci176. Epub 2005 Jul 27.
Concanavalin A (ConA) is a well characterized and extensively used lectin accumulated in the protein bodies of jack bean cotyledons. ConA is synthesized as an inactive precursor proConA. The maturation of inactive proConA into biologically active ConA is a complex process including the removal of an internal glycopeptide and a C-terminal propeptide (CTPP), followed by a head-to-tail ligation of the two largest polypeptides. The cDNA encoding proConA was cloned and expressed in tobacco BY-2 cells. ProConA was slowly transported to the vacuole where its maturation into ConA was similar to that in jack bean cotyledons, apart from an incomplete final ligation. To investigate the role of the nine amino acid CTPP, a truncated form lacking the propeptide (proConADelta9) was expressed in BY-2 cells. In contrast to proConA, proConADelta9 was rapidly chased out of the endoplasmic reticulum (ER) and secreted into the culture medium. The CTPP was then fused to the C-terminal end of a secreted form of green fluorescent protein (secGFP). When expressed in tobacco BY-2 cells and leaf protoplasts, the chimaeric protein was located in the vacuole whereas secGFP was located in the culture medium and in the vacuole. Altogether, our results show we have isolated a new C-terminal vacuolar sorting determinant.
伴刀豆球蛋白A(ConA)是一种特性明确且广泛应用的凝集素,它积累在刀豆种子子叶的蛋白体中。ConA最初以无活性的前体proConA形式合成。无活性的proConA成熟为具有生物活性的ConA是一个复杂的过程,包括去除一个内部糖肽和一个C末端前肽(CTPP),随后两个最大的多肽进行头对尾连接。编码proConA的cDNA被克隆并在烟草BY - 2细胞中表达。ProConA缓慢转运至液泡,在那里它成熟为ConA的过程与刀豆种子子叶中的情况相似,只是最终连接不完全。为了研究九个氨基酸的CTPP的作用,在BY - 2细胞中表达了一种缺少前肽的截短形式(proConADelta9)。与proConA不同,proConADelta9迅速从内质网(ER)中被清除并分泌到培养基中。然后将CTPP融合到分泌形式的绿色荧光蛋白(secGFP)的C末端。当在烟草BY - 2细胞和叶原生质体中表达时,嵌合蛋白位于液泡中,而secGFP位于培养基和液泡中。总之,我们的结果表明我们分离出了一种新的C末端液泡分选决定因子。