Blaustein M P, Ratzlaff R W, Kendrick N C, Schweitzer E S
J Gen Physiol. 1978 Jul;72(1):15-41. doi: 10.1085/jgp.72.1.15.
A latent ATP-dependent Ca storage system is enriched in preparations of pinched-off presynaptic nerve terminals (synaptosomes), and is exposed when the terminals are disrupted by osmotic shock or saponin treatment. The data indicate that a fraction of the Ca uptake (measured with 45Ca) is associated with the intraterminal mitochondria; it is blocked by ruthenium red, by FCCP, and by azide + dinitrophenol + oligomycin. There is, however, a residual ATP-dependent Ca uptake that is insensitive to the aforementioned poisons; this (nonmitochondrial) Ca uptake is blocked by tetracaine, mersalyl and A-23187. Moreover, A-23187 rapidly releases previously accumulated Ca from these (nonmitochondrial) storage sites, whereas the Ca chelator, EGTA, does not. The proteolytic enzyme, trypsin, spares the mitochondria but inactivates the nonmitochondrial Ca uptake mechanism. Chemical measurements of total Ca indicate that the ATP-dependent Ca uptake at the nonmitochondrial sites involves the net transfer of Ca from medium to tissue fragments. This system can sequester Ca when the ambient-ionized Ca2+ concentration (buffered with EGTA) is less than 0.3 micrometer; brain mitochondria take up little Ca when the ionized Ca2+ level is this low. Preliminary subfractionation studies indicate that the nonmitochondrial Ca storage system does not sediment with synaptic vesicles. We propose that this Ca storage system, which has many properties comparable to those of skeletal muscle sarcoplasmic reticulum, may be associated with intraterminal smooth endoplasmic reticulum. This Ca-sequestering organelle may help to buffer intracellular Ca.
一种潜在的ATP依赖型钙储存系统在分离出的突触前神经末梢(突触体)制剂中含量丰富,当这些末梢受到渗透压休克或皂素处理而被破坏时,该系统会被暴露出来。数据表明,一部分钙摄取(用45Ca测量)与末梢内的线粒体有关;它会被钌红、FCCP以及叠氮化物+二硝基苯酚+寡霉素阻断。然而,存在一种对上述毒物不敏感的残余ATP依赖型钙摄取;这种(非线粒体的)钙摄取会被丁卡因、汞撒利和A-23187阻断。此外,A-23187能迅速从这些(非线粒体的)储存位点释放先前积累的钙,而钙螯合剂EGTA则不能。蛋白水解酶胰蛋白酶不会影响线粒体,但会使非线粒体钙摄取机制失活。总钙的化学测量表明,非线粒体位点的ATP依赖型钙摄取涉及钙从介质到组织碎片的净转移。当环境离子化钙2+浓度(用EGTA缓冲)低于0.3微米时,该系统可以螯合钙;当离子化钙水平如此之低时,脑线粒体摄取的钙很少。初步的亚分级研究表明,非线粒体钙储存系统不会与突触小泡一起沉淀。我们提出,这个具有许多与骨骼肌肌浆网相当特性的钙储存系统,可能与末梢内的滑面内质网有关。这种钙螯合细胞器可能有助于缓冲细胞内的钙。