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用于特异性抑制免疫受体激活的高效聚乙二醇结构

Highly effective poly(ethylene glycol) architectures for specific inhibition of immune receptor activation.

作者信息

Baird Emily J, Holowka David, Coates Geoffrey W, Baird Barbara

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853-1301, USA.

出版信息

Biochemistry. 2003 Nov 11;42(44):12739-48. doi: 10.1021/bi034884l.

Abstract

Architectural features of synthetic ligands were systematically varied to optimize inhibition of mast cell degranulation initiated by multivalent crossing of IgE-receptor complexes. A series of ligands were generated by end-capping poly(ethylene glycol) (PEG) polymers and amine-based dendrimers with the hapten 2,4-dinitrophenyl (DNP). These were used to explore the influence of polymeric backbone length, valency, and hapten presentation on binding to anti-DNP IgE and inhibition of stimulated activation of RBL cells. Monovalent MPEG(5000)-DNP (IC(50) = 50 nM), bivalent DNP-PEG(3350)-DNP (IC(50) = 8 nM), bismonovalent MPEG(5000)-DNP(2) (IC(50) = 20 nM), bisbivalent DNP(2)-PEG(3350)-DNP(2) (IC(50) = 3nM) and DNP(4)-dendrimer ligands (IC(50) = 50 nM) all effectively inhibit cellular activation caused by multivalent antigen, DNP-bovine serum albumin. For different DNP ligands, we provide evidence for more effective inhibition due to (i) preferential formation of intra-IgE cross-links by bivalent ligands of sufficient length, (ii) self-association of monovalent ligands with longer tails, and (iii) higher probability of binding for bisvalent ligands. We also show that larger DNP(16)-dendrimers of higher valency trigger degranulation by cross-linking IgE-receptor complexes, whereas smaller DNP-dendrimers are inhibitory. Thus, features of synthetic ligands can be manipulated to control receptor occupation, aggregation, and inhibition of the cellular response.

摘要

系统地改变合成配体的结构特征,以优化对由IgE受体复合物的多价交联引发的肥大细胞脱颗粒的抑制作用。通过用半抗原2,4-二硝基苯基(DNP)封端聚乙二醇(PEG)聚合物和胺基树枝状大分子,生成了一系列配体。这些配体用于探索聚合物主链长度、价态和半抗原呈现方式对与抗DNP IgE结合以及对RBL细胞刺激活化的抑制作用的影响。单价MPEG(5000)-DNP(IC(50)=50 nM)、二价DNP-PEG(3350)-DNP(IC(50)=8 nM)、双单价MPEG(5000)-DNP(2)(IC(50)=20 nM)、双二价DNP(2)-PEG(3350)-DNP(2)(IC(50)=3 nM)和DNP(4)-树枝状大分子配体(IC(50)=50 nM)均能有效抑制由多价抗原DNP-牛血清白蛋白引起的细胞活化。对于不同的DNP配体,我们提供了更有效抑制作用的证据,这是由于:(i)足够长度的二价配体优先形成IgE内交联;(ii)具有较长尾部的单价配体的自缔合;(iii)双价配体更高的结合概率。我们还表明,更高价态的较大DNP(16)-树枝状大分子通过交联IgE-受体复合物触发脱颗粒,而较小的DNP-树枝状大分子则具有抑制作用。因此,可以操纵合成配体的特征来控制受体占据、聚集以及细胞反应的抑制。

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