Expression of alternative forms of differentiation inhibiting activity (DIA/LIF) during murine embryogenesis and in neonatal and adult tissues.

M Robertson, I Chambers, P Rathjen, J Nichols, A Smith
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引用次数: 54

Abstract

Differentiation inhibiting activity/leukaemia inhibitory factor (DIA/LIF) is a pleiotropic cytokine which has been implicated in a variety of developmental and physiological processes in mammals due to its broad range of biological activities in vitro. A role in very early development is suggested by the requirement for DIA/LIF to support the self-renewal of cultured embryonic stem (ES) cells. Other data point to potential roles in the establishment and maintenance of primordial germ cells, in osteogenesis and in haematopoiesis, and possibly in neuronal specification. DIA/LIF may also act as a mediator of the hepatic acute phase response. In the present study the expression of DIA/LIF transcripts during murine development and in adult mice has been determined using a highly sensitive ribonuclease protection analysis. In contrast to previous reports, it is apparent that DIA/LIF transcripts are present at low levels in many adult mouse tissues. Higher levels of expression are observed in skin, lung, intestine, and uterus. Elevated amounts of mRNA are also found in certain foetal tissue during late gestation and neonatally. In earlier embryogenesis, however, DIA/LIF mRNA is produced primarily in extraembryonic tissues. The alternative transcripts which produce either soluble or matrix-associated DIA/LIF exhibit overlapping but non-identical patterns of expression, consistent with the proposition that the two isoforms may have distinct biological functions. These findings are suggestive of widespread roles for DIA/LIF in vivo and are discussed in the light of available data on the phenotype of homozygous DIA/LIF-deficient mice.

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分化抑制活性(DIA/LIF)在小鼠胚胎发生和新生及成体组织中的表达
分化抑制活性/白血病抑制因子(DIA/LIF)是一种多用途细胞因子,在体外具有广泛的生物活性,参与哺乳动物的多种发育和生理过程。DIA/LIF需要支持培养的胚胎干细胞的自我更新,这表明它在非常早期的发育中起作用。其他数据指出了在原始生殖细胞的建立和维持、成骨和造血,以及可能的神经元规范中的潜在作用。DIA/LIF也可能作为肝脏急性期反应的介质。在本研究中,DIA/LIF转录本在小鼠发育和成年小鼠中的表达已使用高度敏感的核糖核酸酶保护分析确定。与先前的报道相反,很明显,在许多成年小鼠组织中,DIA/LIF转录本的水平很低。在皮肤、肺、肠和子宫中观察到较高水平的表达。在妊娠晚期和新生儿的某些胎儿组织中也发现mRNA的升高。然而,在早期胚胎发生中,DIA/LIF mRNA主要在胚胎外组织中产生。产生可溶性或基质相关DIA/LIF的替代转录本表现出重叠但不相同的表达模式,这与两种亚型可能具有不同的生物学功能的命题一致。这些发现提示了DIA/LIF在体内的广泛作用,并根据纯合子DIA/LIF缺陷小鼠表型的现有数据进行了讨论。
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