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在Sf9和Mimic昆虫细胞系中表达的重组马促黄体生成素/绒毛膜促性腺激素(eLH/CG)的生物学活性。

Biological activities of recombinant equine luteinizing hormone/chorionic gonadotropin (eLH/CG) expressed in Sf9 and Mimic insect cell lines.

作者信息

Legardinier Sébastien, Duonor-Cérutti Martine, Devauchelle Gérard, Combarnous Yves, Cahoreau Claire

机构信息

Unité de Physiologie de la Reproduction et des Comportements, Institut National de la Recherche Agronomique (INRA), Nouzilly, France.

出版信息

J Mol Endocrinol. 2005 Feb;34(1):47-60. doi: 10.1677/jme.1.01624.

Abstract

Equine luteinizing hormone (eLH) and chorionic gonadotropin (eCG) are composed of identical alpha and beta polypeptide chains, but eCG subunits are much more heavily glycosylated and sialylated. Consequently, eCG exhibits a much longer half-life than eLH in blood. Recombinant eLH/CG, expressed in Sf9 and Mimic insect cells, were compared with one another and to the natural hormones eCG and eLH. Mimic cells are stably-transformed Sf9 cells, expressing five mammalian genes encoding glycosyltransferases involved in the synthesis of complex N-carbohydrate chains. Recombinant eLH/CG expressed in Mimic cells exhibited a higher apparent molecular weight (MW) than that expressed in Sf9 cells, suggesting that its N-glycosylation was, as expected, more complete. Nevertheless, the two recombinant eLH/CG exhibited lower MW than natural eCG from pregnant mare plasma. The two eLH/CG produced in Sf9 and Mimic cells were found to be active in in vitro LH and FSH bioassays, with potencies similar to those of eCG. By contrast, they exhibited no significant in vivo bioactivity, neither in the specific follicle-stimulating hormone (FSH) assay nor in the specific eCG assay. Although recombinant eLH/CG produced in Mimic cells bears more elaborate carbohydrate chains than recombinant eLH/CG from Sf9 cells, it exhibits no significant in vivo bioactivity, probably because of insufficient terminal sialylation of its carbohydrate chains, leading to its rapid removal from blood.

摘要

马促黄体激素(eLH)和绒毛膜促性腺激素(eCG)由相同的α和β多肽链组成,但eCG亚基的糖基化和唾液酸化程度要高得多。因此,eCG在血液中的半衰期比eLH长得多。将在Sf9和Mimic昆虫细胞中表达的重组eLH/CG相互比较,并与天然激素eCG和eLH进行比较。Mimic细胞是稳定转化的Sf9细胞,表达五个编码参与复杂N-糖链合成的糖基转移酶的哺乳动物基因。在Mimic细胞中表达的重组eLH/CG比在Sf9细胞中表达的具有更高的表观分子量(MW),这表明其N-糖基化如预期的那样更完整。然而,这两种重组eLH/CG的分子量均低于孕马血浆中的天然eCG。发现Sf9和Mimic细胞中产生的两种eLH/CG在体外LH和FSH生物测定中具有活性,其效力与eCG相似。相比之下,它们在体内生物活性方面没有显著表现,无论是在特异性促卵泡激素(FSH)测定中还是在特异性eCG测定中。尽管在Mimic细胞中产生的重组eLH/CG比来自Sf9细胞的重组eLH/CG具有更复杂的糖链,但它没有显著的体内生物活性,可能是因为其糖链的末端唾液酸化不足,导致其从血液中迅速清除。

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