Imai Yoichi, Park Eun Jeong, Peer Dan, Peixoto António, Cheng Guiying, von Andrian Ulrich H, Carman Christopher V, Shimaoka Motomu
Department of Anesthesia, Harvard Medical School, Boston, MA, USA.
Blood. 2008 Dec 15;112(13):5007-15. doi: 10.1182/blood-2008-03-144543. Epub 2008 Sep 22.
alpha(4) integrins play a pivotal role in leukocyte migration and tissue-specific homing. The ability of integrins to bind ligand is dynamically regulated by activation-dependent conformational changes triggered in the cytoplasmic domain. An NMR solution structure defined a putative membrane-proximal salt bridge between the alpha(IIb)beta(3) integrin cytoplasmic tails, which restrains integrins in their low-affinity state. However, the physiological importance of this salt bridge in alpha(4) integrin regulation remains to be elucidated. To address this question, we disrupted the salt bridge in murine germ line by mutating the conserved cytoplasmic arginine R(GFFKR) in alpha(4) integrins. In lymphocytes from knock-in mice (alpha(4)-R/A(GFFKR)), alpha(4)beta(1) and alpha(4)beta(7) integrins exhibited constitutively up-regulated ligand binding. However, transmigration of these cells across VCAM-1 and MAdCAM-1 substrates, or across endothelial monolayers, was reduced. Perturbed detachment of the tail appeared to cause the reduced cell migration of alpha(4)-R/A(GFFKR) lymphocytes. In vivo, alpha(4)-R/A(GFFKR) cells exhibited increased firm adhesion to Peyer patch venules but reduced homing to the gut. Our results demonstrate that the membrane-proximal salt bridge plays a critical role in supporting proper alpha(4) integrin adhesive dynamics. Loss of this interaction destabilizes the nonadhesive conformation, and thereby perturbs the properly balanced cycles of adhesion and deadhesion required for efficient cell migration.
α(4)整合素在白细胞迁移和组织特异性归巢中起关键作用。整合素与配体结合的能力通过细胞质结构域中触发的激活依赖性构象变化而动态调节。一种核磁共振溶液结构定义了α(IIb)β(3)整合素细胞质尾巴之间假定的膜近端盐桥,该盐桥将整合素限制在低亲和力状态。然而,这种盐桥在α(4)整合素调节中的生理重要性仍有待阐明。为了解决这个问题,我们通过突变α(4)整合素中保守的细胞质精氨酸R(GFFKR)破坏了小鼠种系中的盐桥。在敲入小鼠(α(4)-R/A(GFFKR))的淋巴细胞中,α(4)β(1)和α(4)β(7)整合素表现出组成性上调的配体结合。然而,这些细胞跨VCAM-1和MAdCAM-1底物或跨内皮单层的迁移减少。尾巴的扰动脱离似乎导致α(4)-R/A(GFFKR)淋巴细胞的细胞迁移减少。在体内,α(4)-R/A(GFFKR)细胞对派尔集合淋巴结小静脉的牢固粘附增加,但对肠道的归巢减少。我们的结果表明,膜近端盐桥在支持适当的α(4)整合素粘附动力学中起关键作用。这种相互作用的丧失会使非粘附构象不稳定,从而扰乱有效细胞迁移所需的粘附和脱粘的适当平衡循环。