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抗肽抗血清识别出一种广泛分布的细胞酪氨酸激酶,它与c-fps/fes编码的蛋白质相关,但又与之不同。

Antipeptide antiserum identifies a widely distributed cellular tyrosine kinase related to but distinct from the c-fps/fes-encoded protein.

作者信息

Feldman R A, Tam J P, Hanafusa H

出版信息

Mol Cell Biol. 1986 Apr;6(4):1065-73. doi: 10.1128/mcb.6.4.1065-1073.1986.

Abstract

We raised antibodies directed against a synthetic peptide representing an amino acid sequence of the conserved kinase domain of the transforming protein of Fujinami sarcoma virus (FSV) (P140). The antiserum obtained specifically recognized FSV-P140 and its cellular homolog and in addition, it recognized a new cellular protein of 94,000 daltons (NCP94) in avian and mammalian cells. NCP94 was found to be associated with a cyclic nucleotide-independent protein kinase activity that was specific for tyrosine residues. Although NCP94 and FSV-P140 share antigenic determinants, NCP94 is not a cellular homolog of FSV-P140: NCP94 and the previously identified c-fps/fes product were different in their tryptic fingerprints and in their tissue specificities. Thus, the function of NCP94 in normal cells is probably different than that of the c-fps/fes product. NCP94 was expressed in every tissue and cell line that was examined. In chickens, NCP94 levels were highest during embryonic development and NCP94 expression was high in gizzard, brain, and spleen throughout embryonic and adult life. The universal expression of NCP94 suggests that this protein may be involved in an essential function of normal cells. NCP94 may be a new cellular tyrosine kinase of the src gene family.

摘要

我们制备了针对一种合成肽的抗体,该合成肽代表了 Fujinami 肉瘤病毒(FSV)转化蛋白(P140)保守激酶结构域的氨基酸序列。所获得的抗血清特异性识别 FSV-P140 及其细胞同源物,此外,它还识别禽类和哺乳动物细胞中一种 94,000 道尔顿的新细胞蛋白(NCP94)。发现 NCP94 与一种对酪氨酸残基具有特异性的不依赖环核苷酸的蛋白激酶活性相关。尽管 NCP94 和 FSV-P140 共享抗原决定簇,但 NCP94 不是 FSV-P140 的细胞同源物:NCP94 和先前鉴定的 c-fps/fes 产物在胰蛋白酶指纹图谱和组织特异性方面存在差异。因此,NCP94 在正常细胞中的功能可能与 c-fps/fes 产物不同。在每一个被检测的组织和细胞系中都表达了 NCP94。在鸡中,NCP94 水平在胚胎发育期间最高,并且在整个胚胎期和成年期,砂囊、脑和脾脏中 NCP94 的表达都很高。NCP94 的普遍表达表明该蛋白可能参与正常细胞的一项基本功能。NCP94 可能是 src 基因家族的一种新的细胞酪氨酸激酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0fd/367616/384115de2c30/molcellb00088-0109-a.jpg

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