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Identification, cloning and expression analysis of the pluripotency promoting Nanog genes in mouse and human.

机译:小鼠和人类多能性Nanog基因的鉴定,克隆和表达分析。

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The murine Nanog gene, a member of the homeobox family of DNA binding transcription factors, has been shown recently to maintain pluripotency of embryonic stem cells. We have used a sequence homology and expression screen to identify and clone the mouse and human Nanog genes and characterized their phylogenetic context and expression patterns. We report here the gene structure and expression patterns of the mouse Nanog gene, the human Nanog and Nanog2 genes, and six processed human Nanog pseudogenes. Mouse Nanog expression is high in undifferentiated embryonic stem cells and is down-regulated during embryonic stem cell differentiation, concomitant with loss of pluripotency. Murine embryonic Nanog expression is detected in the inner cell mass of the blastocyst. After implantation, Nanog is detectable at embryonic day (E) 6 in proximal epiblast in the region of the presumptive primitive streak. Expression extends distally as the streak elongates during gastrulation and remains restricted to epiblast. Nanog RNA is down-regulated in cells ingressing through the streak to form mesoderm and definitive endoderm. Nanog expression also marks the pluripotent germ cells of the nascent gonad at E11.5-E12.5 and is highly expressed in germ cell tumour and teratoma-derived cell lines. Reverse transcriptase-polymerase chain reaction analysis detected mouse Nanog expression at low levels in several adult tissues. The human Nanog genes are expressed in embryonic stem cells and down-regulated in all adult tissues and differentiated cell lines examined. High levels of human Nanog expression were detected by Northern analysis in the undifferentiated N-Tera embryonal carcinoma cell line. The conservation in gene sequence, structure, and expression of mouse and human Nanog and Nanog2 genes may reflect a common role in the maintenance of pluripotency in both species.
机译:最近显示,鼠Nanog基因是DNA结合转录因子同源异型盒家族的成员,可维持胚胎干细胞的多能性。我们已经使用序列同源性和表达筛选来鉴定和克隆小鼠和人类Nanog基因,并表征它们的系统发育背景和表达模式。我们在这里报告了小鼠Nanog基因,人类Nanog和Nanog2基因以及六个经过处理的人类Nanog假基因的基因结构和表达模式。小鼠Nanog在未分化的胚胎干细胞中表达高,并且在胚胎干细胞分化过程中被下调,并伴随着多能性的丧失。在胚泡的内部细胞团中检测到小鼠胚胎Nanog表达。植入后,在推测的原始条纹区域近端上皮细胞的胚胎发育第6天,可以检测到Nanog。随着条痕在胃形成过程中伸长,表情向远侧延伸,并且仅限于上皮细胞。 Nanog RNA在穿过条痕的细胞中被下调,形成中胚层和定形内胚层。 Nanog表达还在E11.5-E12.5处标记了新生性腺的多能生殖细胞,并在生殖细胞肿瘤和畸胎瘤来源的细胞系中高度表达。逆转录酶-聚合酶链反应分析检测到几种成人组织中小鼠Nanog的表达水平较低。人类Nanog基因在胚胎干细胞中表达,并在所有成人组织和已分化的细胞系中下调。通过Northern分析在未分化的N-Tera胚胎癌细胞系中检测到高水平的人Nanog表达。小鼠和人类Nanog和Nanog2基因的基因序列,结构和表达的保守性可能反映了这两种物种在维持多能性方面的共同作用。

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