Yoo S H, Oh Y S, Kang M K, Huh Y H, So S H, Park H S, Park H Y
National Creative Research Initiative Center for Secretory Granule Research, Korea Advanced Institute of Science and Technology, Yu Sung Gu, Dae Jeon, Korea 305-701.
J Biol Chem. 2001 Dec 7;276(49):45806-12. doi: 10.1074/jbc.M107532200. Epub 2001 Oct 2.
Although the role of secretory granules as the inositol 1,4,5-trisphosphate (IP(3))-sensitive intracellular Ca(2+) store and the presence of the IP(3) receptor (IP(3)R)/Ca(2+) channel on the secretory granule membrane have been established, the identity of the IP(3)R types present in the secretory granules is not known. We have therefore investigated the presence of different types of IP(3)R in the secretory granules of bovine adrenal medullary chromaffin cells using immunogold electron microscopy and found the existence of all three types of IP(3)R in the secretory granules. To determine whether these IP(3)Rs interact with CGA and CGB, each IP(3)R isoform was co-transfected with CGA or CGB into NIH3T3 or COS-7 cells, and the expressed IP(3)R isoform and CGA or CGB were co-immunoprecipitated. From these studies it was shown that all three types of IP(3)R form complexes with CGA and CGB in the cells. To further confirm whether the IP(3)R isoforms and CGA and CGB form a complex in the secretory granules the potential interaction between all three isoforms of IP(3)R and CGA and CGB was tested by co-immunoprecipitation experiments of the mixture of secretory granule lysates and the granule membrane proteins. The three isoforms of IP(3)R were shown to form complexes with CGA and CGB, indicating the complex formation between the three isoforms of IP(3)R and CGA and CGB in the secretory granules. Moreover, the pH-dependent Ca(2+) binding property of CGB was also studied using purified recombinant CGB, and it was shown that CGB bound 93 mol of Ca(2+)/mol with a dissociation constant (K(d)) of 1.5 mm at pH 5.5 but virtually no Ca(2+) at pH 7.5. The high capacity, low affinity Ca(2+)-binding property of CGB at pH 5.5 is comparable with that of CGA and is in line with its role as a Ca(2+) storage protein in the secretory granules.
尽管分泌颗粒作为对肌醇 1,4,5 - 三磷酸(IP(3))敏感的细胞内钙库的作用以及分泌颗粒膜上存在 IP(3) 受体(IP(3)R)/钙通道已得到证实,但分泌颗粒中存在的 IP(3)R 类型尚不明确。因此,我们利用免疫金电子显微镜研究了牛肾上腺髓质嗜铬细胞分泌颗粒中不同类型 IP(3)R 的存在情况,发现分泌颗粒中存在所有三种类型的 IP(3)R。为了确定这些 IP(3)R 是否与嗜铬粒蛋白 A(CGA)和嗜铬粒蛋白 B(CGB)相互作用,将每种 IP(3)R 亚型与 CGA 或 CGB 共转染到 NIH3T3 或 COS - 7 细胞中,然后对表达的 IP(3)R 亚型与 CGA 或 CGB 进行共免疫沉淀。从这些研究中可以看出,所有三种类型的 IP(3)R 在细胞中都与 CGA 和 CGB 形成复合物。为了进一步证实 IP(3)R 亚型与 CGA 和 CGB 在分泌颗粒中是否形成复合物,通过对分泌颗粒裂解物和颗粒膜蛋白混合物进行共免疫沉淀实验,检测了 IP(3)R 的所有三种亚型与 CGA 和 CGB 之间的潜在相互作用。结果表明,IP(3)R 的三种亚型与 CGA 和 CGB 形成复合物,这表明在分泌颗粒中 IP(3)R 的三种亚型与 CGA 和 CGB 之间形成了复合物。此外,还使用纯化的重组 CGB 研究了 CGB 的 pH 依赖性钙结合特性,结果表明,在 pH 5.5 时,CGB 结合 93 摩尔钙/摩尔,解离常数(K(d))为 1.5 毫米,但在 pH 7.5 时几乎不结合钙。CGB 在 pH 5.5 时具有高容量、低亲和力的钙结合特性,这与 CGA 相当,并且与其作为分泌颗粒中钙储存蛋白的作用一致。