Borrelly G, Boyer J C, Touraine B, Szponarski W, Rambier M, Gibrat R
Biochimie et Physiologie Moléculaire des Plantes, Ecole Nationale Supérieure d'Agronomie de Montpellier (Agro-M)/Institut National de la Recherche Agronomique, France.
Proc Natl Acad Sci U S A. 2001 Aug 14;98(17):9660-5. doi: 10.1073/pnas.161215198. Epub 2001 Aug 7.
Growth of the yeast vacuolar protein-sorting mutant vps5Delta affected in the endosome-to-Golgi retromer complex was more sensitive to Mg2+-limiting conditions than was the growth of the wild-type (WT) strain. This sensitivity was enhanced at acidic pH. The vps5Delta strain was also sensitive to Al3+, known to inhibit Mg2+ uptake in yeast cells. In contrast, it was found to be resistant to Ni2+ and Co2+, two cytotoxic analogs of Mg2+. Resistance to Ni2+ did not seem to result from the alteration of plasma-membrane transport properties because mutant and WT cells displayed similar Ni2+ uptake. After plasma-membrane permeabilization, intracellular Ni2+ uptake in vps5Delta cells was 3-fold higher than in WT cells, which is consistent with the implication of the vacuole in the observed phenotypes. In reconstituted vacuolar vesicles prepared from vps5Delta, the rates of H+ exchange with Ni2+, Co2+, and Mg2+ were increased (relative to WT) by 170%, 130%, and 50%, respectively. The rates of H+ exchange with Ca2+, Cd2+, and K+ were similar in both strains, as were alpha-mannosidase and H+-ATPase activities, and SDS/PAGE patterns of vacuolar proteins. Among 14 other vacuolar protein-sorting mutants tested, only the 8 mutants affected in the recycling of trans-Golgi network membrane proteins shared the same Ni2+ resistance phenotype as vps5Delta. It is proposed that a trans-Golgi network Mg2+/H+ exchanger, mislocalized to vps5Delta vacuole, could be responsible for the phenotypes observed in vivo and in vitro.
在核内体到高尔基体逆向转运复合物中受影响的酵母液泡蛋白分选突变体vps5Δ的生长,比野生型(WT)菌株的生长对镁离子限制条件更敏感。在酸性pH条件下,这种敏感性增强。vps5Δ菌株对已知会抑制酵母细胞镁离子摄取的铝离子也敏感。相比之下,发现它对镁离子的两种细胞毒性类似物镍离子和钴离子具有抗性。对镍离子的抗性似乎不是由质膜转运特性的改变导致的,因为突变细胞和野生型细胞表现出相似的镍离子摄取。质膜透化后,vps5Δ细胞内的镍离子摄取比野生型细胞高3倍,这与液泡在观察到的表型中的作用一致。在从vps5Δ制备的重构液泡囊泡中,与镍离子、钴离子和镁离子的氢离子交换速率分别比野生型增加了170%、130%和50%。与钙离子、镉离子和钾离子的氢离子交换速率在两种菌株中相似,α-甘露糖苷酶和氢离子ATP酶活性以及液泡蛋白的SDS/聚丙烯酰胺凝胶电泳图谱也相似。在测试的其他14个液泡蛋白分选突变体中,只有8个在反式高尔基体网络膜蛋白循环中受影响的突变体与vps5Δ具有相同的镍离子抗性表型。有人提出,一个错定到vps5Δ液泡的反式高尔基体网络镁离子/氢离子交换器可能是体内和体外观察到的表型的原因。