Vogl T, Pröpper C, Hartmann M, Strey A, Strupat K, van den Bos C, Sorg C, Roth J
Institute of Experimental Dermatology, Westfälische Wilhelms-Universität Münster, von-Esmarchstrasse 56, 48149 Münster, Germany.
J Biol Chem. 1999 Sep 3;274(36):25291-6. doi: 10.1074/jbc.274.36.25291.
Changes in cytosolic calcium concentrations regulate a wide variety of cellular processes, and calcium-binding proteins are the key molecules in signal transduction, differentiation, and cell cycle control. S100A12, a recently described member of the S100 protein family, has been shown to be coexpressed in granulocytes and monocytes together with two other S100 proteins, MRP8 (S100A8) and MRP14 (S100A9), and a functional relationship between these three S100 proteins has been suggested. Using Western blotting, calcium overlays, intracellular flow cytometry, and cytospin preparations, we demonstrate that S100A12 expression in leukocytes is specifically restricted to granulocytes and that S100A12 represents one of the major calcium-binding proteins in these cells. S100A12, MRP8, and MRP14 translocate simultaneously from the cytosol to cytoskeletal and membrane structures in a calcium-dependent manner. However, no evidence for direct protein-protein interactions of S100A12 with either MRP8 or MRP14 or the heterodimer was found by chemical cross-linking, density gradient centrifugation, mass spectrometric measurements, or yeast two hybrid detection. Thus, S100A12 acts individually during calcium-dependent signaling, independent of MRP8, MRP14, and the heterodimer MRP8/MRP14. This granulocyte-specific signal transduction pathway may offer attractive targets for therapeutic intervention with exaggerated granulocyte activity in pathological states.
胞质钙浓度的变化调节着多种细胞过程,而钙结合蛋白是信号转导、分化及细胞周期调控中的关键分子。S100A12是S100蛋白家族中最近被描述的成员,已显示它与另外两种S100蛋白MRP8(S100A8)和MRP14(S100A9)共同在粒细胞和单核细胞中表达,并且有人提出这三种S100蛋白之间存在功能关系。我们运用蛋白质免疫印迹法、钙覆盖法、细胞内流式细胞术及细胞离心涂片法,证明白细胞中S100A12的表达特异性地局限于粒细胞,并且S100A12是这些细胞中主要的钙结合蛋白之一。S100A12、MRP8和MRP14以钙依赖的方式同时从胞质溶胶转运至细胞骨架和膜结构。然而,通过化学交联、密度梯度离心、质谱测量或酵母双杂交检测,未发现S100A12与MRP8或MRP14或异二聚体之间存在直接的蛋白质 - 蛋白质相互作用。因此,S100A12在钙依赖信号传导过程中独立发挥作用,不依赖于MRP8、MRP14及异二聚体MRP8/MRP14。这种粒细胞特异性信号转导途径可能为病理性状态下粒细胞活性过度的治疗干预提供有吸引力的靶点。