Brown S J, Gould G W, Davies A, Baldwin S A, Lienhard G E, Gibbs E M
Department of Biochemistry, Dartmouth Medical School, Hanover, NH 03756.
Biochim Biophys Acta. 1988 Oct 7;971(3):339-50. doi: 10.1016/0167-4889(88)90150-4.
Our previously described immunoadsorption method for the isolation of vesicles containing the insulin-responsive intracellular glucose transporters from 3T3-L1 adipocytes has been improved in two ways. First, the minimal number of g minutes required to sediment the plasma membranes from the cell homogenate has been determined and, as a result, the supernatant used for immunoadsorption in the new procedure contained twice as much of the intracellular transporters. Second, the immunoadsorption has been performed with affinity-purified antibodies directed against the carboxy terminal peptide of the transporter, rather than against the entire protein. 10(7) cells (10 mg protein) yielded about 12 micrograms of vesicular protein and 11 micrograms of vesicular phospholipid. The transporter constituted 3% of the protein in the vesicles; this amount equates to approx. eight copies of the transporter per 50 nm vesicle. The polypeptide composition of the vesicles was determined by gel electrophoresis and protein staining. Major components, other than the glucose transporter, are polypeptides of Mr 270,000, 245,000, 165,000 and 115,000. The vesicles contained several phosphoproteins; the major ones have a Mr of 245,000, 190,000, 115,000 and 25,000. Insulin treatment of adipocytes did not significantly change the phosphoprotein composition of the vesicles. The vesicles were not enriched in the Golgi marker enzyme, galactosyltransferase. The cellular content of the marker for the trans-Golgi reticulum, sialyltransferase, was too low to detect.
我们之前描述的用于从3T3-L1脂肪细胞中分离含有胰岛素反应性细胞内葡萄糖转运蛋白的囊泡的免疫吸附方法在两个方面得到了改进。首先,确定了从细胞匀浆中沉淀质膜所需的最短g分钟数,因此,新方法中用于免疫吸附的上清液中细胞内转运蛋白的含量是原来的两倍。其次,免疫吸附是用针对转运蛋白羧基末端肽的亲和纯化抗体进行的,而不是针对整个蛋白质。10^7个细胞(10毫克蛋白质)产生了约12微克的囊泡蛋白和11微克的囊泡磷脂。转运蛋白占囊泡中蛋白质的3%;这个量相当于每50纳米囊泡中约有八个转运蛋白拷贝。通过凝胶电泳和蛋白质染色确定了囊泡的多肽组成。除葡萄糖转运蛋白外,主要成分是分子量为270,000、245,000、165,000和115,000的多肽。囊泡中含有几种磷蛋白;主要的磷蛋白分子量为245,000、190,000、115,000和25,000。用胰岛素处理脂肪细胞并没有显著改变囊泡的磷蛋白组成。囊泡中没有富集高尔基体标记酶半乳糖基转移酶。反式高尔基体网状结构的标记物唾液酸转移酶的细胞含量太低,无法检测到。