一种缺乏前列腺素E2诱导活性并通过受体竞争抑制IL-1活性的人IL-1 α衍生物。

Lymphokine research Pub Date : 1990-01-01
M Yamayoshi, M Ohue, H Kawashima, H Kotani, M IIda, S Kawata, M Yamada
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引用次数: 0

摘要

为了分离属于IL-1的多种活性,通过重组DNA技术产生了多种人IL-1 α衍生物。在第151个Asp上被Tyr取代的衍生物(称为TN-55)显示出独特的特征。TN-55在人骨肉瘤细胞系(MG-63)中失去了诱导PGE2的活性,在人真皮成纤维细胞系(cd - 27sk)中失去了促进生长的活性,但在小鼠胸腺细胞中部分保持了LAF活性,对人黑色素瘤细胞系(a -375)保持了细胞抑制活性,在人T细胞系(HSB.2)中保持了诱导IL-2的活性。虽然TN-55与MG-63细胞上的受体结合具有与天然IL-1 α相似的亲和力,但TN-55不仅不能诱导PGE2的产生,而且还能拮抗IL-1 α或IL-1 β诱导PGE2的作用。因此,n -55似乎作为受体拮抗剂起作用。此外,n -55在体内对大鼠ACTH分泌没有刺激作用。另一方面,TN-55诱导兔真皮成纤维细胞系(rabb -9)产生PGE2,并在兔体内表现出热原性。这些数据表明,TN-55与天然IL-1 α具有不同的物种交叉反应性。综上所述,通过替换一个氨基酸可以分离出IL-1 α的多种生物活性。TN-55可能是一种理想的IL-1激动剂,在人体内缺乏IL-1的炎症特征(如pge2依赖性活性),但部分保留T淋巴细胞刺激活性和肿瘤细胞抑制活性。此外,TN-55还可能作为IL-1拮抗剂,通过受体竞争阻断IL-1诱导的PGE2的产生。
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A human IL-1 alpha derivative which lacks prostaglandin E2 inducing activity and inhibits the activity of IL-1 through receptor competition.

In order to segregate multiple activities ascribed to IL-1, various human IL-1 alpha derivatives were produced by recombinant DNA technology. A derivative substituted at the 151st Asp with Tyr(termed to be TN-55) showed unique characteristics. TN-55 lost the PGE2 inducing activity in a human osteosarcoma cell line (MG-63) and growth promoting activity for a human dermal fibroblast cell line (CCD-27Sk), but partially remained LAF activity in mouse thymocyte, cytostatic activity against a human melanoma cell line (A-375) and IL-2 inducing activity in a human T cell line (HSB.2). Although TN-55 bound to the receptor on MG-63 cells with a similar affinity as native IL-1 alpha, TN-55 not only failed in inducing PGE2 production but also antagonized the PGE2 inducing action of IL-1 alpha or IL-1 beta. Thus, TN-55 seems to work as a receptor antagonist. Moreover, TN-55 did not stimulate ACTH secretion in rats in vivo. On the other hand, TN-55 induced PGE2 production in a rabbit dermal fibroblast cell line (RAB-9) and exhibited pyrogenicity in rabbits in vivo. These data suggest that TN-55 has different species-cross reactivity from native IL-1 alpha. In conclusion, multiple biological activities of IL-1 alpha can be segregated by substituting one amino acid. TN-55 may be an ideal IL-1 agonist which lacks inflammatory characteristics of IL-1 (e.g. PGE2-dependent activities) in human but partially retained T lymphocyte stimulating activity and tumor cytostatic activity. In addition, TN-55 may also work as an IL-1 antagonist to block PGE2 production induced by IL-1 through receptor competition.

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