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赤霉素刺激大麦糊粉层内质网中 Ca(2+)的积累:Ca(2+)运输和稳态水平。

Gibberellic-acid-stimulated Ca(2+) accumulation in endoplasmic reticulum of barley aleurone: Ca(2+) transport and steady-state levels.

机构信息

Department of Botany, University of California, 94720, Berkeley, CA, USA.

出版信息

Planta. 1989 Jun;178(3):411-20. doi: 10.1007/BF00391870.

DOI:10.1007/BF00391870
PMID:24212909
Abstract

The steady-state levels of Ca(2+) within the endoplasmic reticulum (ER) and the transport of (45)Ca(2+) into isolated ER of barley (Hordeum vulgare L. cv. Himalaya) aleurone layers were studied. The Ca(2+)-sensitive dye indo-1. Endoplasmic reticulum was isolated and purified from indo-1-loaded protoplasts, and the Ca(2+) level in the ER was measured using the Ca(2+)-sensitive dye indo-1. Endoplasmic reticulum was isolated and purified from indo-1-loaded protoplasts, and the Ca(2+) level in the lumen of the ER was determined by the fluorescence-ratio method to be at least 3 μM. Transport of (45)Ca(2+) into the ER was studied in microsomal fractions isolated from aleurone layers incubated in the presence and absence of gibberellic acid (GA3) and Ca(2+). Isopycinic sucrose density gradient centrifugation of microsomal fractions isolated from aleurone layers or protoplasts separates ER from tonoplast and plasma membranes but not from the Golgi apparatus. Transport of (45)Ca(2+) occurs primarily in the microsomal fraction enriched in ER and Golgi. Using monensin and heat-shock treatments to discriminate between uptake into the ER and Golgi, we established that (45)Ca(2+) transport was into the ER. The sensitivity of (45)Ca(2+) transport to inhibitors and the Km of (45)Ca(2+) uptake for ATP and Ca(2+) transport in the microsomal fraction of barley aleurone cells. The rate of (45)Ca(2+) transport is stimulated several-fold by treatment with GA3. This effect of GA3 is mediated principally by an effect on the activity of the Ca(2+) transporter rather than on the amount of ER.

摘要

研究了大麦糊粉层内质网(ER)内 Ca(2+)的稳态水平和(45)Ca(2+)向分离的 ER 的运输。使用 Ca(2+)敏感染料 indo-1 对用 indo-1 负载的原生质体进行分离和纯化,并使用 Ca(2+)敏感染料 indo-1 测量 ER 中的 Ca(2+)水平。从用 indo-1 负载的原生质体中分离和纯化内质网,并通过荧光比率法确定内质网腔中的 Ca(2+)水平至少为 3 μM。在存在和不存在赤霉素(GA3)和 Ca(2+)的情况下培养糊粉层,研究(45)Ca(2+)向 ER 的运输。用异质蔗糖密度梯度离心从糊粉层或原生质体分离的微粒体部分将 ER 与液泡膜和质膜分离,但不与高尔基体分离。(45)Ca(2+)的运输主要发生在富含 ER 和高尔基体的微粒体部分。使用莫能菌素和热休克处理来区分进入 ER 和高尔基体的摄取,我们确定(45)Ca(2+)的运输是进入 ER 的。大麦糊粉层细胞微粒体部分中(45)Ca(2+)运输对抑制剂的敏感性以及(45)Ca(2+)摄取的 Km 值对 ATP 和 Ca(2+)运输。(45)Ca(2+)的运输速率通过 GA3 的处理被刺激几倍。GA3 的这种作用主要是通过对 Ca(2+)转运体活性的影响而不是对 ER 量的影响来介导的。

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2
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Planta. 1980 Nov;150(1):1-8. doi: 10.1007/BF00385606.
3
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