Istituto di Genetica Vegetale, Consiglio Nazionale delle Ricerche, via della Madonna Alta 130, 06128 Perugia, Italy.
Plant J. 2010 Mar;61(5):782-91. doi: 10.1111/j.1365-313X.2009.04113.x. Epub 2009 Dec 21.
Seed storage proteins accumulate either in the endoplasmic reticulum (ER) or in vacuoles, and it would appear that polymerization events play a fundamental role in regulating the choice between the two destinies of these proteins. We previously showed that a fusion between the Phaseolus vulgaris vacuolar storage protein phaseolin and the N-terminal half of the Zea mays prolamin gamma-zein forms interchain disulfide bonds that facilitate the formation of ER-located protein bodies. Wild-type phaseolin does not contain cysteine residues, and assembles into soluble trimers that transiently polymerize before sorting to the vacuole. These transient interactions are abolished when the C-terminal vacuolar sorting signal AFVY is deleted, indicating that they play a role in vacuolar sorting. We reasoned that if the phaseolin interactions directly involve the C terminus of the polypeptide, a cysteine residue introduced into this region could stabilize these transient interactions. Biochemical studies of two mutated phaseolin proteins in which a single cysteine residue was inserted at the C terminus, in the presence (PHSL*) or absence (Delta 418*) of the vacuolar signal AFVY, revealed that these mutated proteins form disulphide bonds. PHSL* had reduced protein solubility and a vacuolar trafficking delay with respect to wild-type protein. Moreover, Delta 418* was in part redirected to the vacuole. Our experiments strongly support the idea that vacuolar delivery of phaseolin is promoted very early in the sorting process, when polypeptides are still contained within the ER, by homotypic interactions.
种子贮藏蛋白要么积累在内质网 (ER) 中,要么积累在液泡中,而聚合事件似乎在调节这些蛋白质的两种命运之间起着至关重要的作用。我们之前曾表明,菜豆液泡贮藏蛋白 phaseolin 和玉米醇溶蛋白 γ-zein 的 N 端半胱氨酸融合形成链间二硫键,这有助于 ER 定位的蛋白体的形成。野生型 phaseolin 不含半胱氨酸残基,组装成可溶性三聚体,在分选到液泡之前短暂聚合。当删除 C 末端液泡分选信号 AFVY 时,这些瞬时相互作用被消除,表明它们在液泡分选过程中发挥作用。我们推断,如果 phaseolin 相互作用直接涉及多肽的 C 末端,则引入该区域的半胱氨酸残基可以稳定这些瞬时相互作用。在存在(PHSL*)或不存在(Delta 418*)液泡信号 AFVY 的情况下,对两个突变的 phaseolin 蛋白中的两个突变的 phaseolin 蛋白进行生化研究,在 C 末端插入一个单一的半胱氨酸残基,揭示这些突变蛋白形成二硫键。PHSL的蛋白溶解度降低,与野生型蛋白相比,液泡运输延迟。此外,Delta 418部分被重定向到液泡。我们的实验强烈支持这样的观点,即在多肽仍包含在内质网中的分拣过程的早期阶段,通过同源相互作用促进 phaseolin 的液泡输送。