Leslie S W, Borowitz J L
Biochim Biophys Acta. 1975 Jun 25;394(2):227-38. doi: 10.1016/0005-2736(75)90261-8.
Continuous sucrose density gradient subfractions from bovine adrenal medullary microsomes were found to accumulate 45-Ca-2+ in the presence of ATP and ammonium oxalate mainly in subfractions of intermediate density. (Na-++K-+)-ATPase (plasma membrane marker) and Ca-2+-ATPase activities were also concentrated in these intermediate subfractions but thiamine pyrophosphatase (Golgi apparatus marker) was not. NADH oxidase (endoplasmic reticulum marker) activity was distributed throughout all subfractions. 45-Ca-2+ accumulation in adrenal cortical microsomes was found to rise and fall in parallel with thiamine pyrophosphatase but not with (Na-++K-+)-ATPase or NADH oxidase activities. Accumulation of 45-Ca-2+ in membrane vesicles in these experiments suggests the existence of a calcium transfer mechanism in plasma membranes of the adrenal medulla but not adrenal cortex.
研究发现,来自牛肾上腺髓质微粒体的连续蔗糖密度梯度亚组分在ATP和草酸铵存在的情况下,主要在中等密度的亚组分中积累45-Ca-2+。(Na++K+)-ATP酶(质膜标记物)和Ca-2+-ATP酶活性也集中在这些中等亚组分中,但硫胺素焦磷酸酶(高尔基体标记物)则不然。NADH氧化酶(内质网标记物)活性分布于所有亚组分中。研究发现,肾上腺皮质微粒体中45-Ca-2+的积累与硫胺素焦磷酸酶平行升降,但与(Na++K+)-ATP酶或NADH氧化酶活性无关。这些实验中膜囊泡内45-Ca-2+的积累表明,肾上腺髓质而非肾上腺皮质的质膜中存在钙转运机制。