McDonough Daniel B, McIntosh Fiona A, Spanos Constantina, Neelamegham Sriram, Goldsmith Harry L, Simon Scott I
Department of Biomedical Engineering, University of California, Davis, CA 95616, USA.
Ann Biomed Eng. 2004 Sep;32(9):1179-92. doi: 10.1114/b:abme.0000039352.11428.9d.
A cooperative, sequential process of molecular recognition governs leukocyte capture, rolling, and arrest on inflamed endothelium. Flowing neutrophils are captured via heterotypic adhesive interactions mediated by endothelial E-selectin, whereas homotypic interactions between neutrophils are mediated by L-selectin. To elucidate how each selectin facilitates the transition to CD18-mediated stable adhesion, E-selectin and L-selectin were expressed at defined site density in a murine pre-B-cell line. Direct observation of two-body collisions revealed that 30% of neutrophil interactions with E-selectin transfectants formed doublets at low shear rate G = 14 s(-1) whereas a threshold shear rate 14 s(-1) < or = G < or = 10 s(-1) was necessary for L-selectin adhesion. Adhesion via L-selectin resisted rupture at high shear stress, while E-selectin tethered doublets remained intact longer once formed. Moreover, higher expression of L-selectin (1100 sites/microm2) than that of E-selectin (220 sites/microm2) was required for comparable heterotypic adhesion efficiency. With a threefold rise in active CD18 upregulated on chemotactically stimulated neutrophils, homotypic adhesion efficiency increased 10-fold compared to less than 5-fold for heterotypic adhesion to selectin transfectants. Co-expression of E-selectin and ICAM-1 boosted adhesion efficiency threefold more than either receptor alone over the range of active CD18 expression. These data are the first to quantify adhesion efficiency mediated by selectin tethering and conformational activation of beta2-integrin in neutrophils in shear flow.
分子识别的协同、顺序过程控制着白细胞在炎症内皮上的捕获、滚动和黏附。流动的中性粒细胞通过内皮E-选择素介导的异型黏附相互作用被捕获,而中性粒细胞之间的同型相互作用则由L-选择素介导。为了阐明每种选择素如何促进向CD18介导的稳定黏附的转变,在小鼠前B细胞系中以确定的位点密度表达了E-选择素和L-选择素。对双体碰撞的直接观察表明,在低剪切速率G = 14 s(-1)时,30%的中性粒细胞与E-选择素转染体的相互作用形成了双联体,而L-选择素黏附需要阈值剪切速率14 s(-1)≤G≤10 s(-1)。通过L-选择素的黏附在高剪切应力下抵抗破裂,而E-选择素连接的双联体一旦形成则保持完整更长时间。此外,为了获得相当的异型黏附效率,需要L-选择素(1100个位点/μm2)比E-选择素(220个位点/μm2)更高的表达。在趋化刺激的中性粒细胞上活性CD18上调三倍时,同型黏附效率增加了10倍,而异型黏附到选择素转染体的效率增加不到5倍。在活性CD18表达范围内,E-选择素和ICAM-1的共表达比单独的任何一种受体使黏附效率提高了三倍。这些数据首次量化了在剪切流中选择素拴系和中性粒细胞中β2整合素的构象激活介导的黏附效率。