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通过区带沉降法将兔嗜异性白细胞中的颗粒分离为不同群体。

Resolution of granules from rabbit heterophil leukocytes into distinct populations by zonal sedimentation.

作者信息

Baggiolini M, Hirsch J G, De Duve C

出版信息

J Cell Biol. 1969 Feb;40(2):529-41. doi: 10.1083/jcb.40.2.529.

Abstract

Postnuclear supernates from homogenates of essentially pure rabbit heterophil leukocytes were fractionated by means of zonal differential centrifugation through a discontinuous sucrose gradient at various speeds. Three distinct groups of granules were characterized biochemically and morphologically. They were, in order of decreasing sedimentation coefficient: (a) Large, relatively dense granules, identified morphologically as the azurophil or primary granules, and containing essentially all of the myeloperoxidase activity of the preparations, about one-third of their lysozyme activity, and between 50 and 80% of their content in five acid hydrolases typically associated with lysosomes in other cells; (b) smaller, less dense granules, with the morphological appearance of the specific or secondary granules, and carrying most of the alkaline phosphatase and the remainder of the lysozyme activity of the preparations; (c) a second group of lysosome-like particles, associated with a morphologically heterogeneous fraction, and containing the remainder of the acid hydrolases, but little or no myeloperoxidase. When p-nitrophenyl phosphate was used instead of beta-glycerophosphate for the assay of acid phosphatase, only small proportions of the total activity accompanied the two main lysosomal bands, and considerable activity was found in a zone slightly retarded with respect to the slowly moving band of acid hydrolases.

摘要

通过在不同速度下经不连续蔗糖梯度进行区带差速离心,对基本纯的兔嗜异性白细胞匀浆的核后上清液进行分级分离。从生化和形态学方面鉴定出三组不同的颗粒。按照沉降系数递减的顺序,它们分别是:(a) 大的、相对致密的颗粒,形态学上鉴定为嗜天青颗粒或初级颗粒,基本上含有制剂中所有的髓过氧化物酶活性、约三分之一的溶菌酶活性,以及通常与其他细胞溶酶体相关的五种酸性水解酶含量的50%至80%;(b) 较小的、密度较低的颗粒,具有特异性颗粒或次级颗粒的形态外观,含有制剂中大部分的碱性磷酸酶和其余的溶菌酶活性;(c) 第二组溶酶体样颗粒,与形态学上异质的部分相关,含有其余的酸性水解酶,但髓过氧化物酶很少或没有。当用对硝基苯磷酸酯代替β-甘油磷酸酯来测定酸性磷酸酶时,仅小部分总活性伴随着两条主要的溶酶体带,并且在相对于缓慢移动的酸性水解酶带稍有滞后的区域发现了相当大的活性。

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