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二硫醇激活的信号通路在自然杀伤细胞对白细胞功能抗原-1亲和力调节中的证据:结构要求及其与佛波酯和CD16触发通路的关系。

Evidence for a dithiol-activated signaling pathway in natural killer cell avidity regulation of leukocyte function antigen-1: structural requirements and relationship to phorbol ester- and CD16-triggered pathways.

作者信息

Edwards B S, Curry M S, Southon E A, Chong A S, Graf L H

机构信息

Institute for Basic and Applied Medical Research, Lovelace Institutes, Albuquerque, NM 87108, USA.

出版信息

Blood. 1995 Sep 15;86(6):2288-301.

PMID:7662976
Abstract

Dithiothreitol (DTT) activation of the adhesive function of several different integrins suggests the existence of a common DTT-sensitive integrin regulatory element. Ui11/E3, a natural killer (NK) cell-resistant murine target cell line genetically engineered to constitutively express human intercellular adhesion molecule-1 (ICAM-1; CD54) was used in a flow cytometric experimental model to evaluate DTT effects on the NK cell integrin adhesion molecule, leukocyte function antigen-1 (LFA-1; alpha L beta 2, CD11a/CD18). DTT and several structurally related dithiol compounds elicited a dramatic elevation in conjugate formation that was dependent on target cell ICAM-1 expression, was blocked by LFA-1 alpha L or beta 2 chain-specific antibodies, and occurred in the absence of Ui11/E3 target cell exposure to DTT or quantitative changes in NK cell membrane LFA-1 expression. This avidity modulation of LFA-1 by DTT required actin polymerization, was abrogated by the protein kinase C inhibitor calphostin C, involved activities of calyculin A- and okadaic acid-sensitive serine/threonine protein phosphatases PP-1 and/or PP-2A but not geldanamycin-sensitive tyrosine kinases, and differed with respect to kinetics and enzyme inhibitor sensitivity from LFA-1 activation promoted by cross-linking of NK cell CD16 or phorbol ester treatment. A key structural feature of DTT was the presence of two thiol groups, both reduced but not physically adjacent as in the nonstimulatory dithiol, 2,3-dimercaptopropanol. LFA-1 activation was not because of DTT chelation of Ca2+ or Zn2+. Immunoblotting studies identified multiple NK cell plasma membrane-associated proteins to be reduced by DTT under LFA-1-activating conditions, but similar effects were also promoted by reducing agent treatments that failed to alter adhesive function. Direct chemical modification of LFA-1 seemed an unlikely basis of activation because (1) DTT activated LFA-1 in HSB2 T cells without detectable disulfide reduction in LFA-1 alpha L or beta 2 chains immunoprecipitated from these cells and (2) DTT treatment of NK cells did not hinder binding of KIM127 and KIM185, monoclonal antibodies that recognize epitopes in the potentially DTT-susceptible cysteine-rich domain of the beta 2 chain. Thus, these results extended the range of DTT-activatible integrins to include NK cell LFA-1 and characterized for the first time signaling-associated enzymatic activities involved in DTT activation of NK cell LFA-1. Moreover, they suggested that structural features of DTT, particularly SH group spatial positioning, are important in LFA-activation for reasons other than cation chelation or disulfide reduction.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

二硫苏糖醇(DTT)对几种不同整合素黏附功能的激活表明存在一个共同的对DTT敏感的整合素调节元件。Ui11/E3是一种对自然杀伤(NK)细胞有抗性的小鼠靶细胞系,经基因工程改造可组成性表达人细胞间黏附分子-1(ICAM-1;CD54),在流式细胞术实验模型中用于评估DTT对NK细胞整合素黏附分子白细胞功能抗原-1(LFA-1;αLβ2,CD11a/CD18)的影响。DTT和几种结构相关的二硫醇化合物引起结合物形成的显著增加,这依赖于靶细胞ICAM-1的表达,被LFA-1αL或β2链特异性抗体阻断,且在未将Ui11/E3靶细胞暴露于DTT或NK细胞膜LFA-1表达无定量变化的情况下发生。DTT对LFA-1的这种亲和力调节需要肌动蛋白聚合,被蛋白激酶C抑制剂钙泊三醇C消除,涉及花萼海绵诱癌素A和冈田酸敏感的丝氨酸/苏氨酸蛋白磷酸酶PP-1和/或PP-2A的活性,但不涉及格尔德霉素敏感的酪氨酸激酶的活性,并且在动力学和酶抑制剂敏感性方面与通过NK细胞CD16交联或佛波酯处理促进的LFA-1激活不同。DTT的一个关键结构特征是存在两个硫醇基团,两者均被还原,但不像非刺激性二硫醇2,3-二巯基丙醇那样在物理上相邻。LFA-1的激活不是由于DTT对Ca2+或Zn2+的螯合。免疫印迹研究确定在LFA-1激活条件下,多种NK细胞质膜相关蛋白会被DTT还原,但未能改变黏附功能的还原剂处理也会促进类似的效应。LFA-1的直接化学修饰似乎不太可能是激活的基础,因为(1)DTT在HSB2 T细胞中激活LFA-1,而从这些细胞中免疫沉淀的LFA-1αL或β2链中未检测到二硫键还原,并且(2)DTT处理NK细胞不会阻碍KIM127和KIM185的结合,KIM127和KIM185是识别β2链潜在的对DTT敏感的富含半胱氨酸结构域中表位的单克隆抗体。因此,这些结果将DTT可激活的整合素范围扩展到包括NK细胞LFA-1,并首次表征了参与NK细胞LFA-1的DTT激活的信号相关酶活性。此外,它们表明DTT的结构特征,特别是SH基团的空间定位,在LFA激活中很重要,其原因不是阳离子螯合或二硫键还原。(摘要截短于400字)

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