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大麦根质膜的纯化:磷钨酸-铬酸染色的特异性

Purification of plasma membranes from roots of barley: specificity of the phosphotungstic Acid-chromic Acid stain.

作者信息

Nagahashi G, Leonard R T, Thomson W W

机构信息

Departments of Biology and Plant Sciences, University of California, Riverside, California 92521.

出版信息

Plant Physiol. 1978 Jun;61(6):993-9. doi: 10.1104/pp.61.6.993.

Abstract

Plasma membrane vesicles from roots of barley (Hordeum vulgare L., var. Arivat) had an equilibrium density in sucrose of about 1.16 grams per cubic centimeter, but could not be purified satisfactorily with the procedure developed for roots of other plant species. The reported procedure involving differential centrifugation to remove mitochondria (peak density of 1.18 grams per cubic centimeter) and subsequent density gradient centrifugation to purify plasma membrane vesicles was modified to include a narrower differential centrifugation fraction (13,000 to 40,000g instead of 13,000 to 80,000g) and a narrower density range in the sucrose gradient (1.15 to 1.18 grams per cubic centimeter instead of 1.15 to 1.20 grams per cubic centimeter). The fraction obtained by the modified procedure was between 60 and 70% pure as determined by staining with the phosphotungstic acid-chromic acid procedure, which was judged to be reliable for identifying plasma membrane vesicles in subcellular fractions from barley roots. The plasma membrane fraction was enriched in K(+)-stimulated ATPase activity at pH 6.5. The presence of nonspecific ATP-hydrolyzing activity in the plasma membrane fraction made it difficult to determine if the ATPase had properties in common with those reported for cation absorption in barley roots.

摘要

大麦(Hordeum vulgare L.,品种Arivat)根的质膜囊泡在蔗糖中的平衡密度约为每立方厘米1.16克,但采用为其他植物物种的根开发的方法无法令人满意地纯化。所报道的方法包括差速离心以去除线粒体(峰值密度为每立方厘米1.18克),随后进行密度梯度离心以纯化质膜囊泡,该方法进行了修改,包括更窄的差速离心部分(13,000至40,000g,而不是13,000至80,000g)和蔗糖梯度中更窄的密度范围(每立方厘米1.15至1.18克,而不是1.15至1.20克)。通过改进的方法获得的部分通过磷钨酸 - 铬酸染色法测定纯度在60%至70%之间,该方法被认为对于鉴定大麦根亚细胞部分中的质膜囊泡是可靠的。质膜部分在pH 6.5时K(+)刺激的ATP酶活性增强。质膜部分中存在非特异性ATP水解活性,使得难以确定该ATP酶是否具有与报道的大麦根阳离子吸收相关的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa0d/1092027/23c5e80ea45e/plntphys00867-0136-a.jpg

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