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原癌基因TCL1:不仅仅是Akt的共激活因子。

Proto-oncogene TCL1: more than just a coactivator for Akt.

作者信息

Noguchi Masayuki, Ropars Virginie, Roumestand Christian, Suizu Futoshi

机构信息

Division of Cancer Biology, Institute for Genetic Medicine, Hokkaido University, Sapporo, Japan.

出版信息

FASEB J. 2007 Aug;21(10):2273-84. doi: 10.1096/fj.06-7684com. Epub 2007 Mar 14.

Abstract

Serine threonine kinase Akt, also called PKB (protein kinase B), plays a central role in regulating intracellular survival. Deregulation of this Akt signaling pathway underlies various human neoplastic diseases. Recently, the proto-oncogene TCL1 (T cell leukemia 1), with a previously unknown physiological function, was shown to interact with the Akt pleckstrin homology domain, enhancing Akt kinase activity; hence, it functions as an Akt kinase coactivator. In contrast to pathological conditions in which the TCL1 gene is highly activated in various human neoplasmic diseases, the physiological expression of TCL1 is tightly limited to early developmental cells as well as various developmental stages of immune cells. The NBRE (nerve growth factor-responsive element) of the proximal TCL1 promoter sequences can regulate the restricted physiological expression of TCL1 in a negative feedback mechanism. Further, based on the NMR structural studies of Akt-TCL1 protein complexes, an inhibitory peptide, "Akt-in," consisting of the betaA strand of TCL1, has been identified and has therapeutic potential. This review article summarizes and discusses recent advances in the understanding of TCL1-Akt functional interaction in order to clarify the biological action of the proto-oncogene TCL1 family and the development avenues for a suppressive drug specific for Akt, a core intracellular survival regulator.

摘要

丝氨酸苏氨酸激酶Akt,也称为蛋白激酶B(PKB),在调节细胞内生存中起核心作用。该Akt信号通路失调是多种人类肿瘤性疾病的基础。最近,原癌基因TCL1(T细胞白血病1),其生理功能此前未知,被证明与Akt普列克底物蛋白同源结构域相互作用,增强Akt激酶活性;因此,它作为Akt激酶共激活因子发挥作用。与TCL1基因在各种人类肿瘤性疾病中高度激活的病理状况相反,TCL1的生理表达严格限于早期发育细胞以及免疫细胞的各个发育阶段。TCL1近端启动子序列的神经生长因子反应元件(NBRE)可通过负反馈机制调节TCL1的受限生理表达。此外,基于Akt-TCL1蛋白复合物的核磁共振结构研究,已鉴定出一种由TCL1的βA链组成的抑制性肽“Akt-in”,具有治疗潜力。这篇综述文章总结并讨论了对TCL1-Akt功能相互作用理解的最新进展,以阐明原癌基因TCL1家族的生物学作用以及针对细胞内生存核心调节因子Akt的抑制性药物的开发途径。

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