Liu Junling, Jackson Carl W, Gruppo Ralph A, Jennings Lisa K, Gartner T Kent
Department of Microbiology and Molecular Cell Sciences, University of Memphis, Memphis, TN 38152, USA.
Blood. 2005 Jun 1;105(11):4345-52. doi: 10.1182/blood-2004-07-2718. Epub 2005 Feb 8.
Bidirectional signaling is an essential feature of alphaIIbbeta3 function. The alphaIIb cytoplasmic domain negatively regulates beta3-mediated inside-out signaling, but little is known about the regulation of alphaIIb-mediated outside-in signaling. We show that alphaIIb-mediated outside-in signaling is enhanced in platelets of a patient lacking the terminal 39 residues of the beta3 cytoplasmic tail. This enhanced signaling was detected as thromboxane A(2) (TxA(2)) production and granule secretion, and required ligand cross-linking of alphaIIbbeta3 and platelet aggregation. This outside-in signaling was specifically inhibited by a palmitoylated version of a beta3 peptide corresponding to cytoplasmic domain residues R724-R734. Unlike the palmitoylated peptide, the nonpalmitoylated beta3 peptide could not cross the platelet membrane and did not inhibit this outside-in signaling. The physiologic relevance of this beta3-mediated negative regulation of alphaIIb outside-in signaling was demonstrated in normal platelets treated with the palmitoylated peptide and a physiologic agonist. Binding of alphaIIbbeta3 complexes to immobilized peptides demonstrated that a peptide corresponding to beta3 residues R724-R734 appears to bind to an alphaIIb cytoplasmic domain peptide containing residues K989-D1002, but not to control peptides. These results demonstrate that alphaIIb-mediated outside-in signaling resulting in TxA(2) production and granule secretion is negatively regulated by a sequence of residues in the membrane distal beta3 cytoplasmic domain sequence RKEFAKFEEER.
双向信号传导是αIIbβ3功能的一个基本特征。αIIb细胞质结构域负向调节β3介导的由内向外信号传导,但对于αIIb介导的由外向内信号传导的调节知之甚少。我们发现,在一名缺乏β3细胞质尾巴末端39个残基的患者的血小板中,αIIb介导的由外向内信号传导增强。这种增强的信号传导表现为血栓素A2(TxA2)的产生和颗粒分泌,并且需要αIIbβ3的配体交联和血小板聚集。这种由外向内信号传导被对应于细胞质结构域残基R724 - R734的β3肽的棕榈酰化形式特异性抑制。与棕榈酰化肽不同,非棕榈酰化的β3肽不能穿过血小板膜,也不抑制这种由外向内信号传导。在用棕榈酰化肽和生理激动剂处理的正常血小板中,证明了这种β3介导的对αIIb由外向内信号传导的负调节的生理相关性。αIIbβ3复合物与固定化肽的结合表明,对应于β3残基R724 - R734的肽似乎与包含残基K989 - D1002的αIIb细胞质结构域肽结合,但不与对照肽结合。这些结果表明,导致TxA2产生和颗粒分泌的αIIb介导的由外向内信号传导受到膜远端β3细胞质结构域序列RKEFAKFEEER中的一系列残基的负调节。