Garrett Sarah C, Hodgson Louis, Rybin Andrew, Toutchkine Alexei, Hahn Klaus M, Lawrence David S, Bresnick Anne R
Department of Biochemistry, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, USA.
Biochemistry. 2008 Jan 22;47(3):986-96. doi: 10.1021/bi7021624. Epub 2007 Dec 23.
S100A4, a member of the S100 family of Ca2+-binding proteins, displays elevated expression in malignant human tumors compared with benign tumors, and increased expression correlates strongly with poor patient survival. S100A4 has a direct role in metastatic progression, likely due to the modulation of actomyosin cytoskeletal dynamics, which results in increased cellular motility. We developed a fluorescent biosensor (Mero-S100A4) that reports on the Ca2+-bound, activated form of S100A4. Direct attachment of a novel solvatochromatic reporter dye to S100A4 results in a sensor that, upon activation, undergoes a 3-fold enhancement in fluorescence, thus providing a sensitive assay for use in vitro and in vivo. In cells, localized activation of S100A4 at the cell periphery is observed during random migration and following stimulation with lysophosphatidic acid, a known activator of cell motility and proliferation. Additionally, a screen against a library of FDA-approved drugs with the biosensor identified an array of phenothiazines as inhibitors of myosin-II associated S100A4 function. These data demonstrate the utility of the new biosensor both for drug discovery and for probing the cellular dynamics controlled by the S100A4 metastasis factor.
S100A4是Ca2+结合蛋白S100家族的成员之一,与良性肿瘤相比,其在人类恶性肿瘤中的表达升高,且表达增加与患者生存率低密切相关。S100A4在转移进展中起直接作用,可能是由于调节了肌动球蛋白细胞骨架动力学,从而导致细胞运动性增加。我们开发了一种荧光生物传感器(Mero-S100A4),用于报告Ca2+结合的、活化形式的S100A4。将一种新型溶剂化显色报告染料直接连接到S100A4上,得到一种传感器,该传感器在活化后荧光增强3倍,从而提供了一种可用于体外和体内的灵敏检测方法。在细胞中,在随机迁移过程中以及用溶血磷脂酸(一种已知的细胞运动和增殖激活剂)刺激后,可观察到S100A4在细胞周边的局部活化。此外,用该生物传感器对FDA批准的药物库进行筛选,确定了一系列吩噻嗪类药物是肌球蛋白-II相关S100A4功能的抑制剂。这些数据证明了这种新型生物传感器在药物发现以及探测由S100A4转移因子控制的细胞动力学方面的实用性。