Hogg N, Bates P A
Leukocyte Adhesion Laboratory, Imperial Cancer Research Fund, Lincoln's Inn Fields, WC2A 3PX, London, UK.
Matrix Biol. 2000 Jul;19(3):211-22. doi: 10.1016/s0945-053x(00)00066-4.
The integrins are cell membrane receptors composed of alpha and beta subunits which orchestrate adhesive events in all tissues of the body (Hynes, R.O., 1992. Integrins: versatility, modulation, and signalling in cell adhesion. Cell 69, 11-25; and Hynes, R.O., 1999. Cell adhesion: old and new questions. Trends Cell Biol. 9, M33-37). At present 18 alpha subunits and 8 beta subunits have been identified which are loosely organised into families. There are three inherited autosomal recessive diseases in man which involve germline mutations in genes coding for integrins. Leukocyte adhesion deficiency-1 (LAD-1) is the result of mutations in the beta2 subunit of the CD11/CD18 integrins, LFA-1, Mac-1, p150,95 and alphadbeta2. The bleeding disorder Glanzmann thrombasthenia is caused by mutations in either the alpha or beta subunit of the platelet integrin, alphaIIbbeta3. Thirdly, it is now recognised than one of the variants of the usually lethal skin blistering disorder, epidermolysis bullosa (JEB-PA), is caused by mutation in either the alpha or beta subunit of the epithelial hemidesmosome integrin, alpha6beta4. Many of the mutations cause defective alphabeta heterodimer formation. The majority of the beta subunit mutations are in the conserved N-terminal region known as the betaI domain. It is suggested that this region participates in alphabeta heterodimer formation.
整合素是由α和β亚基组成的细胞膜受体,它们在人体所有组织中协调黏附事件(海因斯,R.O.,1992年。整合素:细胞黏附中的多功能性、调节和信号传导。《细胞》69卷,第11 - 25页;以及海因斯,R.O.,1999年。细胞黏附:新老问题。《细胞生物学趋势》9卷,M33 - 37页)。目前已鉴定出18种α亚基和8种β亚基,它们大致分为几个家族。人类有三种常染色体隐性遗传病涉及编码整合素的基因的种系突变。白细胞黏附缺陷-1(LAD - 1)是CD11/CD18整合素、淋巴细胞功能相关抗原-1(LFA - 1)、巨噬细胞-1(Mac - 1)、p150,95和αdβ2的β2亚基发生突变的结果。出血性疾病血小板无力症是由血小板整合素αIIbβ3的α或β亚基发生突变引起的。第三,现在认识到,通常致命的皮肤水疱病大疱性表皮松解症(JEB - PA)的一种变体是由上皮半桥粒整合素α6β4的α或β亚基发生突变引起的。许多突变导致αβ异二聚体形成缺陷。大多数β亚基突变发生在保守的N端区域,即βI结构域。有人认为该区域参与αβ异二聚体的形成。