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整合素α4胞质结构域的特殊功能特性。

Specialized functional properties of the integrin alpha 4 cytoplasmic domain.

作者信息

Kassner P D, Alon R, Springer T A, Hemler M E

机构信息

Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Mol Biol Cell. 1995 Jun;6(6):661-74. doi: 10.1091/mbc.6.6.661.

Abstract

For functional studies of the integrin alpha 4 cytoplasmic domain, we have expressed the following in K562 and Chinese hamster ovary (CHO) cells: 1) wild-type alpha 4 (called X4C4), 2) two chimeric forms of alpha 4 (called X4C2 and X4C5) that contain the cytoplasmic domains of alpha 2 and alpha 5, respectively, and 3) alpha 4 with no cytoplasmic domain (X4C0). Cytoplasmic domain exchange had no effect on VLA-4-dependent static cell adhesion or tethering to VCAM-1 in conditions of shear flow. However, the presence of the alpha 2 or alpha 5 tails markedly enhanced VLA-4-dependent K562 cells spreading (X4C2 > X4C5 > X4C4 > X4C0), increased localization of VLA-4 into focal adhesion-like complexes in CHO cells (X4C2 > X4C5 > X4C4), and strengthened CHO and K562 cell resistance to detachment from VCAM-1 in conditions of shear flow (X4C2 > X4C5 > X4C4 > X4C0). Conversely, the alpha 4 tail supported greater VLA-4-dependent haptotactic and chemotactic cell migration. In the absence of any alpha tail (i.e., X4C0), robust focal adhesions were observed, even though cell spreading and adhesion strengthening were minimal. Thus, such focal adhesions may have relatively little functional importance, and should not be compared with focal adhesions formed when alpha tails are present. Together, these results indicate that all three alpha-chain tails exert defined positive effects (compared with no tail at all), but suggest that the alpha 4 cytoplasmic domain may be specialized to engage in weaker cytoskeletal interactions, leading to diminished focal adhesion formation, cell spreading, and adhesion strengthening, while augmenting cell migration and facilitating rolling under shear flow. These properties of the alpha 4 tail are consistent with the role of alpha 4 integrins on highly motile lymphocytes, monocytes, and eosinophils.

摘要

为了研究整合素α4胞质结构域的功能,我们在K562细胞和中国仓鼠卵巢(CHO)细胞中表达了以下几种形式:1)野生型α4(称为X4C4),2)两种α4嵌合形式(称为X4C2和X4C5),分别包含α2和α5的胞质结构域,3)无胞质结构域的α4(X4C0)。在剪切流条件下,胞质结构域交换对VLA-4依赖的静态细胞黏附或与VCAM-1的拴系没有影响。然而,α2或α5尾部的存在显著增强了VLA-4依赖的K562细胞铺展(X4C2>X4C5>X4C4>X4C0),增加了VLA-4在CHO细胞中向黏着斑样复合物的定位(X4C2>X4C5>X4C4),并增强了CHO和K562细胞在剪切流条件下对从VCAM-1上脱离的抵抗力(X4C2>X4C5>X4C4>X4C0)。相反,α4尾部支持更大程度的VLA-4依赖的趋触性和趋化性细胞迁移。在没有任何α尾部(即X4C0)的情况下,尽管细胞铺展和黏附增强最小,但仍观察到了强大的黏着斑。因此,这种黏着斑可能功能重要性相对较小,不应与存在α尾部时形成的黏着斑进行比较。总之,这些结果表明,所有三种α链尾部都发挥了明确的积极作用(与完全没有尾部相比),但表明α4胞质结构域可能专门参与较弱的细胞骨架相互作用,导致黏着斑形成减少、细胞铺展和黏附增强减弱,同时增强细胞迁移并促进剪切流下的滚动。α4尾部的这些特性与α4整合素在高迁移性淋巴细胞、单核细胞和嗜酸性粒细胞上的作用一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b89f/301227/55a07607a44a/mbc00075-0044-a.jpg

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