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在由胶原蛋白和Fcγ-IIA受体交联激活的人血小板中,脾酪氨酸激酶(Syk)与酪氨酸磷酸化蛋白相互作用。

Syk interacts with tyrosine-phosphorylated proteins in human platelets activated by collagen and cross-linking of the Fc gamma-IIA receptor.

作者信息

Yanaga F, Poole A, Asselin J, Blake R, Schieven G L, Clark E A, Law C L, Watson S P

机构信息

Department of Pharmacology, University of Oxford, U.K.

出版信息

Biochem J. 1995 Oct 15;311 ( Pt 2)(Pt 2):471-8. doi: 10.1042/bj3110471.

Abstract

Activation of human platelets by cross-linking of the platelet low-affinity IgG receptor, the Fc gamma receptor IIA (Fc gamma-RIIA), or by collagen is associated with rapid phosphorylation on tyrosine of the non-receptor tyrosine kinase syk. Phosphorylation is still observed, albeit sometimes reduced, in the presence of a combination of a protein kinase C inhibitor, Ro 31-8220, and the intracellular calcium chelator, BAPTA-AM, demonstrating independence from phosphoinositide-specific phospholipase C (PLC) activity. In contrast, the combination of Ro 31-8220 and BAPTA-AM completely inhibits phosphorylation of syk in thrombin-stimulated platelets. Phosphorylation of syk increases its autophosphorylation activity measured in a kinase assay performed on syk immunoprecipitates. Fc gamma-RIIA also undergoes phosphorylation in syk immunoprecipitates from platelets activated by cross-linking of Fc gamma-RIIA but not by collagen, suggesting that it associates with the kinase. Consistent with this, tyrosine-phosphorylated Fc gamma-RIIA is precipitated by a glutathione S-transferase (GST) fusion protein containing the tandem src homology (SH2) domains of syk from Fc gamma-RIIA- but not collagen-activated cells. Two uncharacterized tyrosine-phosphorylated proteins of 40 and 65 kDa are uniquely precipitated by a GST fusion protein containing the tandem syk-SH2 domains in collagen-stimulated platelets. A peptide based on the antigen recognition activation motif (ARAM) of Fc gamma-RIIA, and phosphorylated on the two tyrosine residues found within this region, selectively binds syk from lysates of resting platelets; this interaction is not seen with a non-phosphorylated peptide. Kinase assays on Fc gamma-RIIA immunoprecipitates reveal the constitutive association of an unidentified kinase activity in resting cells which phosphorylates a 67 kDa protein. Syk is not detected in Fc gamma-RIIA immunoprecipitates from resting cells but associates with the receptor following activation and, together with Fc gamma-RIIA, is phosphorylated in the kinase assay in vitro. These results demonstrate that syk is activated by Fc gamma-RIIA cross-linking and collagen, independent of PLC, suggesting that it may have an important role in the early events associated with platelet activation. The association of syk with Fc gamma-RIIA appears to be mediated through the tandem SH2 domains in syk and the ARAM motif of Fc gamma-RIIA. A similar interaction may underlie the response to collagen, suggesting that its signalling receptor contains an ARAM motif.

摘要

通过血小板低亲和力IgG受体(Fcγ受体IIA,Fcγ-RIIA)交联或胶原蛋白激活人血小板,与非受体酪氨酸激酶syk的酪氨酸快速磷酸化有关。在蛋白激酶C抑制剂Ro 31-8220和细胞内钙螯合剂BAPTA-AM联合存在的情况下,仍可观察到磷酸化,尽管有时会减少,这表明其独立于磷酸肌醇特异性磷脂酶C(PLC)活性。相比之下,Ro 31-8220和BAPTA-AM的联合完全抑制凝血酶刺激的血小板中syk的磷酸化。syk的磷酸化增加了在对syk免疫沉淀进行的激酶测定中测得的自身磷酸化活性。在通过Fcγ-RIIA交联而非胶原蛋白激活的血小板的syk免疫沉淀中,Fcγ-RIIA也会发生磷酸化,这表明它与该激酶相关。与此一致的是,酪氨酸磷酸化的Fcγ-RIIA可被含有syk串联src同源(SH2)结构域的谷胱甘肽S-转移酶(GST)融合蛋白从Fcγ-RIIA激活而非胶原蛋白激活的细胞中沉淀出来。在胶原蛋白刺激的血小板中,含有串联syk-SH2结构域的GST融合蛋白可独特地沉淀出两种未鉴定的40 kDa和65 kDa酪氨酸磷酸化蛋白。基于Fcγ-RIIA的抗原识别激活基序(ARAM)且在该区域内发现的两个酪氨酸残基上磷酸化的肽,可选择性地结合静息血小板裂解物中的syk;非磷酸化肽则无此相互作用。对Fcγ-RIIA免疫沉淀进行的激酶测定揭示了静息细胞中一种未鉴定激酶活性的组成性结合,该活性可使一种67 kDa蛋白磷酸化。在静息细胞的Fcγ-RIIA免疫沉淀中未检测到syk,但激活后与该受体结合,并在体外激酶测定中与Fcγ-RIIA一起被磷酸化。这些结果表明,syk通过Fcγ-RIIA交联和胶原蛋白激活,独立于PLC,这表明它可能在与血小板激活相关的早期事件中起重要作用。syk与Fcγ-RIIA的结合似乎是通过syk中的串联SH2结构域和Fcγ-RIIA的ARAM基序介导的。类似的相互作用可能是对胶原蛋白反应的基础,这表明其信号受体含有一个ARAM基序。

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