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两栖动物变态过程中程序性细胞死亡的激素调节。

Hormonal regulation of programmed cell death during amphibian metamorphosis.

作者信息

Tata J R

机构信息

Division of Developmental Biochemistry, National Institute for Medical Research, London, U.K.

出版信息

Biochem Cell Biol. 1994 Nov-Dec;72(11-12):581-8. doi: 10.1139/o94-077.

Abstract

Extensive programmed cell death (PCD) is initiated at the onset of amphibian metamorphosis, resulting in 100% of cells dying in some larval tissues, as during total regression of tail and gills. All cell death during metamorphosis is under the control of thyroid hormone (TH), which can initiate the process precociously in whole tadpoles or in individual tissues in culture. The hormone prolactin (PRL), given exogenously, prevents natural and TH-induced metamorphosis. We have exploited this dual hormonal regulation in premetamorphic Xenopus tails in organ culture to identify and characterize early genes that are TH-induced and considered important for initiating cell death. Among the earliest genes activated by TH are those encoding the two thyroid hormone receptors TR alpha and TR beta. This autoinduction of TR genes is considered important since, in blocking this process, PRL also inhibited the expression of other TH-inducible genes and prevented cell death. The expression of early genes other than TR genes, which are known to promote cell death or survival, is also considered to be important for the initiation of PCD during amphibian metamorphosis. We are, therefore, working on the identification, characterization, and expression of members of the Xenopus bcl-2-like gene family, as well as other genes, such as nur-77 and ICE, which may act as early genes during tadpole tail regression.

摘要

广泛的程序性细胞死亡(PCD)在两栖动物变态发育开始时启动,导致一些幼虫组织中的细胞100%死亡,如尾巴和鳃完全退化时。变态发育过程中的所有细胞死亡都受甲状腺激素(TH)的控制,甲状腺激素可以在整个蝌蚪或培养的单个组织中过早地启动这一过程。外源性给予的催乳素(PRL)可阻止自然和TH诱导的变态发育。我们利用器官培养中非洲爪蟾变态前尾巴的这种双重激素调节来鉴定和表征TH诱导的、被认为对启动细胞死亡很重要的早期基因。TH激活的最早基因包括编码两种甲状腺激素受体TRα和TRβ的基因。TR基因的这种自诱导被认为很重要,因为在阻断这一过程时,PRL也抑制了其他TH诱导基因的表达并阻止了细胞死亡。已知促进细胞死亡或存活的TR基因以外的早期基因的表达,也被认为对两栖动物变态发育过程中PCD的启动很重要。因此,我们正在研究非洲爪蟾bcl-2样基因家族成员以及其他基因(如nur-77和ICE)的鉴定、表征和表达,这些基因可能在蝌蚪尾巴退化过程中作为早期基因发挥作用。

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