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通过反应产物沉积和铁蛋白标记抗体观察到的大肠杆菌细胞表面定位的碱性磷酸酶。

Cell surface-localized alkaline phosphatase of Escherichia coli as visualized by reaction product deposition and ferritin-labeled antibodies.

作者信息

MacaAlister T J, Irvin R T, Costerton J W

出版信息

J Bacteriol. 1977 Apr;130(1):318-28. doi: 10.1128/jb.130.1.318-328.1977.

Abstract

When cells of a wild-type Eschericia coli O8 strain bearing a complete lipopolysaccharide were incubated for alkaline phosphatase reaction product and examined by electron microscopy, the depostion of lead salts was to be observed primarily within the periplasmic space. A similar treatment of cells derived from this strain, which bears a highly abbreviated lipopolysaccharide, showed a mixed cell surface and periplasmic localization of reaction product, suggesting a surface association of a portion of the enzyme. To further explore this possibility, ferritin-antibody conjugates against the active enzyme and its irreversibly dissociated subunits were prepared and allowed to react with cells of both strains. The results obtained from these experiments revealed the presence of both the active enzyme and inactive subunits of the enzyme at the cell surface of the mutant strain. The evidence obtained offers further proof of the validity of the reaction product deposition technique and indicates that alkaline phosphatase may be associated with some component of the outer membrane in this organism. The observation of enzyme subunits at the cell surface further suggests that an association of these subunits with structural components of the cell envelope may provide a locus at which they may dimerize to form active enzyme.

摘要

当带有完整脂多糖的野生型大肠杆菌O8菌株的细胞用于碱性磷酸酶反应产物的孵育并通过电子显微镜检查时,主要在周质空间内观察到铅盐的沉积。对来自该菌株的带有高度简化脂多糖的细胞进行类似处理,结果显示反应产物在细胞表面和周质中均有定位,这表明部分酶存在表面结合。为了进一步探究这种可能性,制备了针对活性酶及其不可逆解离亚基的铁蛋白-抗体缀合物,并使其与两种菌株的细胞反应。从这些实验中获得的结果表明,突变菌株的细胞表面存在活性酶及其无活性亚基。所获得的证据进一步证明了反应产物沉积技术的有效性,并表明碱性磷酸酶可能与该生物体的外膜某些成分相关。在细胞表面观察到酶亚基进一步表明,这些亚基与细胞膜结构成分的结合可能提供了一个它们可以二聚化形成活性酶的位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5223/235209/727a337ef878/jbacter00305-0333-a.jpg

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