Gao J, Zoller K E, Ginsberg M H, Brugge J S, Shattil S J
Department of Vascular Biology, Scripps Research Institute, La Jolla, CA 92037, USA.
EMBO J. 1997 Nov 3;16(21):6414-25. doi: 10.1093/emboj/16.21.6414.
pp72syk is essential for development and function of several hematopoietic cells, and it becomes activated through tandem SH2 interaction with ITAM motifs in immune response receptors. Since Syk is also activated through integrins, which do not contain ITAMs, a CHO cell model system was used to study Syk activation by the platelet integrin, alpha IIb beta 3. As in platelets, Syk underwent tyrosine phosphorylation and activation during CHO cell adhesion to alpha IIb beta 3 ligands, including fibrinogen. This involved Syk autophosphorylation and the tyrosine kinase activity of Src, and it exhibited two novel features. Firstly, unlike alpha IIb beta 3-mediated activation of pp125FAK, Syk activation could be triggered by the binding of soluble fibrinogen and abolished by truncation of the alpha IIb or beta 3 cytoplasmic tail, and it was resistant to inhibition by cytochalasin D. Secondly, it did not require phosphorylated ITAMs since it was unaffected by disruption of an ITAM-interaction motif in the SH2(C) domain of Syk or by simultaneous overexpression of the tandem SH2 domains. These studies demonstrate that Syk is a proximal component in alpha IIb beta 3 signaling and is regulated as a consequence of intimate functional relationships with the alpha IIb beta 3 cytoplasmic tails and with Src or a closely related kinase. Furthermore, there are fundamental differences in the activation of Syk by alpha IIb beta 3 and immune response receptors, suggesting a unique role for integrins in Syk function.
pp72syk对多种造血细胞的发育和功能至关重要,并且在免疫应答受体中通过与免疫受体酪氨酸激活基序(ITAM)的串联Src同源2(SH2)结构域相互作用而被激活。由于Syk也可通过不含有ITAM的整合素激活,因此使用了一个中国仓鼠卵巢(CHO)细胞模型系统来研究血小板整合素αIIbβ3对Syk的激活作用。与血小板中情况一样,在CHO细胞黏附于包括纤维蛋白原在内的αIIbβ3配体的过程中,Syk发生酪氨酸磷酸化并被激活。这涉及Syk自身磷酸化以及Src的酪氨酸激酶活性,并且呈现出两个新特征。首先,与αIIbβ3介导的pp125黏着斑激酶(FAK)激活不同,可溶性纤维蛋白原的结合可触发Syk激活,而αIIb或β3细胞质尾的截短可消除这种激活,并且它对细胞松弛素D的抑制具有抗性。其次,它不需要磷酸化的ITAM,因为Syk SH2(C)结构域中ITAM相互作用基序的破坏或串联SH2结构域的同时过表达均不影响它。这些研究表明,Syk是αIIbβ3信号传导的近端组分,并且由于与αIIbβ3细胞质尾以及与Src或密切相关激酶的紧密功能关系而受到调节。此外,αIIbβ3和免疫应答受体对Syk的激活存在根本差异,这表明整合素在Syk功能中具有独特作用。