Yoshioka S, Sun-Wada G H, Ishida N, Kawakita M
Department of Physiological Chemistry, The Tokyo Metropolitan Institute of Medical Science (Rinshoken).
J Biochem. 1997 Oct;122(4):691-5. doi: 10.1093/oxfordjournals.jbchem.a021810.
In our previous study, we demonstrated that UDP-galactose transporter cDNAs (hUGT1 and hUGT2) were able to complement the genetic defect of murine Had-1 cells that were deficient in the UDP-galactose transporter, and that the microsomal vesicles isolated from Had-1-transformants, which were obtained through transfection with these cDNAs, had recovered the ability to uptake UDP-galactose [Ishida, N. et al. (1996) J. Biochem. 120, 1074-1078]. In this report, we describe the preparation of peptide antibodies that recognize the hUGT isozymes, and the detection of hUGT proteins expressed in the transformants. The occurrence of the endogenous hUGT1 protein in HeLa cells was also detected. Using the hUGT1-specific antibodies, the subcellular localization of hUGT1 in the Golgi membrane was demonstrated by immunofluorescence microscopy and subcellular fractionation. These studies led us to develop a simple procedure, based on Percoll density gradient centrifugation, for preparing functional Golgi vesicles from the hUGT1-transformed Had-1 cells, that will facilitate future biochemical analyses of the UDP-galactose transporter for the elucidation of its structure-function relationship.
在我们之前的研究中,我们证明了UDP-半乳糖转运体cDNA(hUGT1和hUGT2)能够弥补UDP-半乳糖转运体缺陷的小鼠Had-1细胞的遗传缺陷,并且从通过这些cDNA转染获得的Had-1转化体中分离出的微粒体囊泡恢复了摄取UDP-半乳糖的能力[石田,N.等人(1996年)《生物化学杂志》120,1074 - 1078]。在本报告中,我们描述了识别hUGT同工酶的肽抗体的制备,以及在转化体中表达的hUGT蛋白的检测。还检测到了HeLa细胞中内源性hUGT1蛋白的存在。使用hUGT1特异性抗体,通过免疫荧光显微镜和亚细胞分级分离证明了hUGT1在高尔基体膜中的亚细胞定位。这些研究使我们开发了一种基于Percoll密度梯度离心的简单方法,用于从hUGT1转化的Had-1细胞中制备功能性高尔基体囊泡,这将有助于未来对UDP-半乳糖转运体进行生化分析以阐明其结构-功能关系。