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去污剂增溶的肌浆网中Ca2+-ATP酶微晶的电子显微镜观察

Electron microscope observations on Ca2+-ATPase microcrystals in detergent-solubilized sarcoplasmic reticulum.

作者信息

Taylor K A, Mullner N, Pikula S, Dux L, Peracchia C, Varga S, Martonosi A

机构信息

Department of Anatomy, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

J Biol Chem. 1988 Apr 15;263(11):5287-94.

PMID:2965700
Abstract

Crystalline arrays of Ca2+-ATPase molecules develop in detergent-solubilized sarcoplasmic reticulum during incubation for several weeks at 2 degrees C under nitrogen in a medium of 0.1 M KCl, 10 mM K-3-(N-morpholino)propanesulfonate, pH 6.0, 3 mM MgCl2, 20 mM CaCl2, 20% glycerol, 3 mM NaN3, 5 mM dithiothreitol, 25 IU/ml Trasylol, 2 micrograms/ml 1,6-di-tert-butyl-p-cresol, 2 mg/ml protein, and 2-4 mg of detergent/mg of protein. Electron microscopy of sectioned, negatively stained, freeze-fractured, and frozen-hydrated Ca2+-ATPase crystals indicates that they consist of stacked lamellar arrays of Ca2+-ATPase molecules. Prominent periodicities of ATPase molecules within the lamellae arise from a centered rectangular lattice of dimensions 164 x 55.5 A. The association of lamellae into three-dimensional stacks is assumed to involve interactions between the exposed hydrophilic headgroups of ATPase molecules, that is promoted by glycerol and 20 mM Ca2+. Similar Ca2+-induced crystals were observed with purified or purified and delipidated Ca2+-ATPase preparations at lower detergent/protein ratios. Cross-linking of Ca2+-ATPase crystals with glutaraldehyde protects the structure against conditions such as low Ca2+, high pH, elevated temperature, SH group reagents, high concentration of detergents, and removal of phospholipids by extraction with organic solvents that disrupt unfixed preparations.

摘要

在氮气环境下,于2℃将去污剂溶解的肌浆网在含有0.1M KCl、10mM K-3-(N-吗啉代)丙烷磺酸盐、pH 6.0、3mM MgCl2、20mM CaCl2、20%甘油、3mM叠氮化钠、5mM二硫苏糖醇、25IU/ml抑肽酶、2μg/ml 1,6-二叔丁基对甲酚、2mg/ml蛋白质以及2-4mg去污剂/mg蛋白质的培养基中孵育数周后,会形成Ca2+-ATP酶分子的晶体阵列。对切片、负染、冷冻断裂和冷冻水合的Ca2+-ATP酶晶体进行电子显微镜观察表明,它们由Ca2+-ATP酶分子的堆叠层状阵列组成。片层内ATP酶分子的显著周期性源于尺寸为164×55.5埃的中心矩形晶格。片层聚合成三维堆叠被认为涉及ATP酶分子暴露的亲水头基团之间的相互作用,这种相互作用由甘油和20mM Ca2+促进。在较低的去污剂/蛋白质比例下,用纯化的或纯化并脱脂的Ca2+-ATP酶制剂也观察到了类似的Ca2+诱导晶体。用戊二醛对Ca2+-ATP酶晶体进行交联可保护其结构免受诸如低Ca2+、高pH、高温、SH基团试剂、高浓度去污剂以及用有机溶剂萃取去除磷脂等破坏未固定制剂的条件的影响。

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