Station Biologique de Beau-Site, ERA 701, CNRS, Université de Poitiers, 25 rue du Faubourg St.-Cyprien, F-86000, Poitiers, France.
Planta. 1984 May;161(2):178-85. doi: 10.1007/BF00395479.
Kjeldahl assays showed that the pod wall of Vicia faba fruits behaves as a transitory reservoir of nitrogen. We have studied the properties and energetics of amino-acid uptake during the accumulating stage of pod wall development. A comparative analysis using various inhibitors or activators of the proton pump has been carried out i) on threonine uptake, ii) on the acidifying activity of the tissues, and iii) on the transmembrane potential difference of mesocarp cells. Except for the effect of dicyclohexylcarbodiimide which could not be satisfactorily explained, all other results obtained with ATPase inhibitors, uncouplers and fusicoccin were consistent with the view of a transport energized by the proton-motive force. Adding threonine to a medium containing fragments of pericarp or of endocarp induced a pH change (to-wards more alkaline values) of the medium and a membrane depolarization of the storage cells which depended on the amino-acid concentration added. These data indicate H(+)-threonine cotransport in the pod wall of broad bean. Moreover, because p-chloromercuribenzenesulphonic acid inhibits threonine uptake without affecting the transmembrane potential difference, it is concluded that the threonine carrier possesses a functional SH-group located at the external side of the plasmalemma.
凯氏定氮法显示,蚕豆果实的豆荚壁在氮的暂存中起着作用。我们研究了在豆荚壁发育的积累阶段氨基酸摄取的特性和能量学。采用各种质子泵抑制剂或激活剂,对以下内容进行了对比分析:i)苏氨酸摄取,ii)组织酸化活性,以及 iii)中果皮细胞的跨膜电位差。除二环己基碳化二亚胺的效果无法得到满意解释外,用 ATP 酶抑制剂、解偶联剂和 fusicoccin 得到的所有其他结果都与质子动力驱动的运输观点一致。将苏氨酸添加到含有果皮或内果皮片段的培养基中会引起培养基 pH 值的变化(向更碱性方向变化),以及储存细胞的膜去极化,这取决于添加的氨基酸浓度。这些数据表明在蚕豆豆荚壁中有 H(+) - 苏氨酸协同运输。此外,由于对氯汞苯磺酸抑制苏氨酸摄取而不影响跨膜电位差,因此可以得出结论,苏氨酸载体具有位于质膜外侧的功能性 SH 基团。