Carroll K, Ray K, Helm B, Carey E
Krebs Institute for Biomolecular Research, Department of Molecular Biology and Biotechnology, The University of Sheffield, UK.
Eur J Cell Biol. 2001 Apr;80(4):295-302. doi: 10.1078/0171-9335-00161.
The expression of several isoforms of the small-molecular-weight Rab3 GTP-binding proteins is a characteristic feature of all cell types undergoing regulated exocytosis, in which Rab3 proteins are considered to regulate the assembly/disassembly of a fusion complex between granule and plasma membrane in a positive and negative manner through interaction with effector proteins. The pattern of Rab3 protein expression may, therefore, provide a subtle means of regulating exocytosis. To investigate the relationship between Rab3 expression and secretory activity, we assessed the differential expression of individual Rab3 proteins in high- and low-secreting clones of the rat basophilic (RBL) cell line. mRNAs for Rab3 isoforms (a-d) were analyzed by constructing cDNA libraries of high- and low-secreting RBL clones. The relative abundance of mRNAs for Rab3 isoforms was initially determined from the clonal frequency of corresponding cDNA clones. RT-PCR using isoform-specific primers was successfully applied to the quantitation of Rab3a mRNA. The presence of individual Rab3 proteins was revealed by SDS-PAGE and immunoblotting, and also by in situ immunofluorescence confocal microscopy. We present evidence that Rab3a and Rab3c are expressed at high levels in the low-secreting variant, while Rab3d is predominant in the high secretor. Levels of the Rab3 effector proteins, Rabphilin and Noc2, are similar in both RBL cell lines. Subcellular fractionation of unstimulated high and low secretor RBL clones revealed that in both cell types Rab3a has a cytoplasmic location while Rab3d is present in a membrane/organelle fraction containing secretory vesicles. Differences in the pattern of expression of Rab3 isoforms in the two RBL cell lines and their localisation may influence the secretory potential. Furthermore, the presence of Rab3 and effector proteins indicates that the mechanism for regulated exocytosis in cells of mast cells/basophil lineage appears similar to that in pre-synaptic vesicles and pancreatic beta-cells.
小分子Rab3 GTP结合蛋白的几种亚型的表达是所有经历调节性胞吐作用的细胞类型的一个特征,其中Rab3蛋白被认为通过与效应蛋白相互作用,以正负两种方式调节颗粒与质膜之间融合复合物的组装/解离。因此,Rab3蛋白的表达模式可能提供一种调节胞吐作用的微妙方式。为了研究Rab3表达与分泌活性之间的关系,我们评估了大鼠嗜碱性(RBL)细胞系高分泌和低分泌克隆中单个Rab3蛋白的差异表达。通过构建高分泌和低分泌RBL克隆的cDNA文库,分析了Rab3亚型(a - d)的mRNA。Rab3亚型mRNA的相对丰度最初是根据相应cDNA克隆的克隆频率确定的。使用亚型特异性引物的RT-PCR成功地用于定量Rab3a mRNA。通过SDS-PAGE和免疫印迹以及原位免疫荧光共聚焦显微镜揭示了单个Rab3蛋白的存在。我们提供的证据表明,Rab3a和Rab3c在低分泌变体中高表达,而Rab3d在高分泌细胞中占主导。Rab3效应蛋白Rabphilin和Noc2在两种RBL细胞系中的水平相似。未刺激的高分泌和低分泌RBL克隆的亚细胞分级分离显示,在两种细胞类型中,Rab3a都位于细胞质中,而Rab3d存在于含有分泌囊泡的膜/细胞器部分中。两种RBL细胞系中Rab3亚型表达模式及其定位的差异可能会影响分泌潜能。此外,Rab3和效应蛋白的存在表明,肥大细胞/嗜碱性粒细胞系细胞中的调节性胞吐作用机制似乎与突触前囊泡和胰腺β细胞中的相似。