QUANTITATIVE IMMUNOGOLD LOCALIZATION OF NA, K-ATPASE ALONG RAT NEPHRON

被引:19
|
作者
TAKADA, T [1 ]
YAMAMOTO, A [1 ]
OMORI, K [1 ]
TASHIRO, Y [1 ]
机构
[1] KANSAI MED UNIV,DEPT PHYSIOL,MORIGUCHI,OSAKA 570,JAPAN
关键词
D O I
10.1007/BF00315877
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Ultrastructural localization of Na, K-ATPase alpha-subunit along rat nephron segments was investigated quantitatively by immunogold electron microscopy on LR-White ultrathin sections using affinity-purified antibody against alpha-subunit of the enzyme. Ultrathin sections were incubated with the antibody at a saturation level and the number of gold particles bound per mum of the plasma membrane (particle density) of the tubular epithelial cells from the proximal tubule to the collecting duct was determined. In all the tubular epithelial cells, gold particles were located exclusively on the basolateral surface, and no significant binding of gold particles to the apical surface was observed. Distribution of gold particles on the basolateral membranes was quite heterogeneous; lateral membranes and infolded basal membranes were highly labeled, whereas the basal membranes which are in direct contact with the basal lamina were scarcely labeled. The average particle density on the basal surface was highest in the distal straight tubule cells (11.4 units), very high in the distal convoluted tubule cells (9.8 units), intermediate in the proximal tubule cells (3.3 units), in the connecting tubule cells (4.3 units), and in the principal cells of the collecting duct (5.6-3.8 units), low in the thin limb of Henle's loop (1.0 unit), and at the control level in the intercalated cells in the connecting and collecting duct. The relative number of gold particles/mm nephron segment and the relative number of gold particles in the various nephron segments were calculated using quantitative morphological data. The estimated distribution profile of the former was in good agreement with the Na, K-ATPase activity profile in rat nephron, which was determined biochemically with a microenzymatic method.
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页码:183 / 197
页数:15
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