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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Fluid-phase endocytosis in Citrus juice cells is independent from vacuolar pH and inhibited by chlorpromazine, an inhibitor of PI-3 kinases and clathrin-mediated endocytosis.
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Fluid-phase endocytosis in Citrus juice cells is independent from vacuolar pH and inhibited by chlorpromazine, an inhibitor of PI-3 kinases and clathrin-mediated endocytosis.

机译:柑橘汁细胞中的液相内吞作用独立于液泡pH值,并受到氯丙嗪(PI-3激酶抑制剂和网格蛋白介导的内吞作用)的抑制。

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摘要

Compared to their more acidic relatives, sweet lime (Citrus limettioides Tan.) is distinguished by having a high vacuolar pH and a low sugar content. To determine whether variations in vacuolar pH are linked to different sugar uptake systems, resulting in contrasting sugar levels, we investigated developmental changes in V- (tonoplast-bound) and P- (plasmalemma-bound) ATPase activities, and the capacity of energised plasmalemma and tonoplast vesicles to take-up sucrose. Both plasmalemma- and tonoplast-bound ATPase activities, increased during fruit development. Artificially energised plasmalemma vesicles accumulated sucrose against a concentration gradient, whereas tonoplast vesicles did not show a similar uptake capacity, even in the presence of ATP. When juice cells were incubated with sucrose for 18 h with the endocytic marker, dextran-Texas Red (d-TR), an intense red fluorescence was observed in the vacuole. Sucrose-inducible uptake of d-TR was suppressed by the clathrin- and PI-3 kinase-mediated endocytosis inhibitor, chlorpromazine, but not by the caveolin-mediated endocytosis inhibitor, filipin. However, 3-dimensional Z-stack confocal images demonstrated the formation and presence of endocytic vesicles 0.5-2 micro m in diameter, which were considerably larger than vesicles formed by clathrin-assisted scaffolding. The data indicated that: (i) most sucrose uptake into the vacuole is not mediated by a tonoplast-bound carrier; (ii) uptake of external solutes into the vacuole of C. limettioides juice cells is independent of vacuolar pH; and (iii) sucrose uptake occurs largely by a non-selective endocytic mechanism composed of vesicles, consistent with pinocytosis.
机译:与它们的酸性更高的亲戚相比,甜石灰(Citrus limettioides Tan。)的特征在于液泡pH值高且糖含量低。为了确定液泡pH的变化是否与不同的糖吸收系统相关联,从而导致糖水平的差异,我们研究了V-(与液泡膜结合)和P-(与血浆膜结合)ATPase活性的发展变化,以及激发血浆的能力和液泡膜囊泡吸收蔗糖。果实发育过程中,质膜结合和液泡膜结合的ATPase活性均增加。人工激发的质膜囊泡在浓度梯度下积累了蔗糖,而液泡膜囊泡即使在存在ATP的情况下也没有显示出相似的吸收能力。当将果汁细胞与蔗糖与内吞标记物葡聚糖-得克萨斯红(d-TR)一起孵育18小时时,在液泡中观察到强烈的红色荧光。网格蛋白和PI-3激酶介导的内吞作用抑制剂氯丙嗪抑制了蔗糖诱导的d-TR摄取,但caveolin介导的内吞作用抑制剂非磷脂抑制了蔗糖诱导的d-TR摄取。然而,3维Z堆栈共聚焦图像显示了直径为0.5-2微米的内吞囊泡的形成和存在,其明显大于网格蛋白辅助支架形成的囊泡。数据表明:(i)多数液泡中的蔗糖摄取不是由与液泡膜结合的载体介导的; (ii)外部溶质对柠檬酸梭菌汁液细胞液泡的吸收与液泡pH无关。 (iii)蔗糖的摄取主要通过与囊泡作用一致的由囊泡组成的非选择性内吞机制发生。

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