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LEC12和LEC29功能获得性中国仓鼠卵巢突变体揭示了调节VIM-2抗原合成和E-选择素结合的机制。

LEC12 and LEC29 gain-of-function Chinese hamster ovary mutants reveal mechanisms for regulating VIM-2 antigen synthesis and E-selectin binding.

作者信息

Patnaik Santosh K, Potvin Barry, Stanley Pamela

机构信息

Department of Cell Biology, Albert Einstein College of Medicine, New York, New York 10461, USA.

出版信息

J Biol Chem. 2004 Nov 26;279(48):49716-26. doi: 10.1074/jbc.M408755200. Epub 2004 Sep 13.

Abstract

LEC12 and LEC29 are two gain-of-function Chinese hamster ovary glycosylation mutants that express the Fut9 gene encoding alpha(1,3)fucosyltransferase IX (alpha(1,3) Fuc-TIX). Both mutants express the Lewis X (Le(X)) determinant Galbeta(1,4)[Fucalpha(1,3)]GlcNAc, and LEC12, but not LEC29 cells, also express the VIM-2 antigen SAalpha(2,3)-Galbeta(1,4)GlcNAcbeta(1,3)Galbeta(1,4)[Fucalpha(1,3)]GlcNAc. Here we show that LEC29 cells transfected with a Fut9 cDNA express VIM-2, and thus LEC29 cells synthesize appropriate acceptors to generate the VIM-2 epitope. Semiquantitative reverse transcription-PCR showed that LEC12 has 10- to 20-fold less Fut9 gene transcripts than LEC29. However, Western analysis revealed that LEC12 has approximately 20 times more Fut9 protein than LEC29. The latter finding was consistent with our previous observation that LEC12 has approximately 40 times more in vitro alpha(1,3)Fuc-T activity than LEC29. The basis for the difference in Fut9 protein levels was found to lie in sequence differences in the 5'-untranslated regions (5'-UTR) of LEC12 and LEC29 Fut9 gene transcripts. Whereas reporter assays with the respective 5'-UTR regions linked to luciferase did not indicate a reduced translation efficiency caused by the LEC29 5'-UTR, transfected full-length LEC29 Fut9 cDNA or in vitro-synthesized full-length LEC29 Fut9 RNA gave less Fut9 protein than similar constructs with a LEC12 5'-UTR. This difference appears to be largely responsible for the reduced alpha(1,3)Fuc-TIX activity and lack of VIM-2 expression of LEC29 cells. This could be of physiological relevance, because LEC29 and parent Chinese hamster ovary cells transiently expressing a Fut9 cDNA were able to bind mouse E-selectin, although they did not express sialyl-Le(X).

摘要

LEC12和LEC29是两个功能获得性中国仓鼠卵巢糖基化突变体,它们表达编码α(1,3)岩藻糖基转移酶IX(α(1,3) Fuc-TIX)的Fut9基因。这两个突变体都表达Lewis X(Le(X))决定簇Galβ(1,4)[Fucα(1,3)]GlcNAc,并且LEC12细胞(而非LEC29细胞)还表达VIM-2抗原SAα(2,3)-Galβ(1,4)GlcNAcβ(1,3)Galβ(1,4)[Fucα(1,3)]GlcNAc。在此我们表明,用Fut9 cDNA转染的LEC29细胞表达VIM-2,因此LEC29细胞合成了产生VIM-2表位的合适受体。半定量逆转录-PCR显示,LEC12的Fut9基因转录本比LEC29少10至20倍。然而,蛋白质印迹分析显示,LEC12的Fut9蛋白比LEC29多约20倍。后一发现与我们之前的观察结果一致——LEC12的体外α(1,3)Fuc-T活性比LEC29高约40倍。发现Fut9蛋白水平差异的基础在于LEC12和LEC29 Fut9基因转录本5'-非翻译区(5'-UTR)的序列差异。虽然用与荧光素酶相连的各自5'-UTR区域进行的报告基因检测未表明LEC29 5'-UTR导致翻译效率降低,但转染的全长LEC29 Fut9 cDNA或体外合成的全长LEC29 Fut9 RNA产生的Fut9蛋白比带有LEC12 5'-UTR的类似构建体少。这种差异似乎很大程度上导致了LEC29细胞α(1,3)Fuc-TIX活性降低以及缺乏VIM-2表达。这可能具有生理相关性,因为瞬时表达Fut9 cDNA的LEC29和亲本中国仓鼠卵巢细胞能够结合小鼠E-选择素,尽管它们不表达唾液酸化-Le(X)。

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