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利用虹鳟鱼睾丸中的CTP:CMP-3-脱氧壬糖酸胞苷基转移酶合成CMP-脱氨神经氨酸(CMP-KDN)。CMP-KDN合成酶的鉴定与表征。

Synthesis of CMP-deaminoneuraminic acid (CMP-KDN) using the CTP:CMP-3-deoxynonulosonate cytidylyltransferase from rainbow trout testis. Identification and characterization of a CMP-KDN synthetase.

作者信息

Terada T, Kitazume S, Kitajima K, Inoue S, Ito F, Troy F A, Inoue Y

机构信息

Department of Biophysics and Biochemistry, Faculty of Science, University of Tokyo, Japan.

出版信息

J Biol Chem. 1993 Feb 5;268(4):2640-8.

PMID:8381411
Abstract

The sugar nucleotide, cytidine 5'-(3-deoxy-D-glycero-D-galacto-2-nonulosonic phosphate) (CMP-KDN) is expected to serve as a donor of KDN residues in the synthesis of KDN-containing glycoconjugates. We report here the identification and characterization of CMP-KDN synthetase, a novel enzyme responsible for synthesis of CMP-KDN from KDN and CTP. The enzyme was partially purified from the testis of rainbow trout (Oncorhynchus mykiss), where KDN gangliosides were first discovered (Yu, S., Kitajima, K., Inoue, S., and Inoue, Y. (1991) J. Biol. Chem. 266, 21929-21935), and used to synthesize CMP-[14C]KDN, which was characterized by 1H NMR. Vmax/Km studies showed that KDN was a preferred nonulosonic acid substrate compared to N-acetylneuraminic acid (Neu5Ac) or N-glycolylneuraminic acid (Neu5Gc) (4.4 x 10(-3) min-1 for KDN versus 2.3 and 1.8 x 10(-3) min-1 for Neu5Ac and Neu5Gc, respectively). CMP-KDN synthetase activity was maximal at pH 9-10 and at 25 degrees C. The presence of either Mg2+ or Mn2+ was essential for CMP-KDN synthetase activity. 25 mM Mg2+ stimulated formation of CMP-KDN more than 10-fold, yet only stimulated formation of CMP-Neu5Ac and CMP-Neu5Gc 4-fold, relative to 1 mM Mg2+. A kinetic study using mixed substrates showed that both CMP-KDN and CMP-Neu5Ac synthetase activities in the partially purified enzyme were due to the same active site of a single enzyme. In contrast, Neu5Ac and Neu5Gc were the preferred nonulosonic acid substrates for the calf brain CMP-sialic acid synthetase. Thus, mammalian CMP-sialic acid synthetases recognizes similar, yet distinctively different, substrate specificity determinants. Thus, the trout testis enzyme was considered to synthesize activated sugar nucleotides required for synthesis of both (KDN)GM3 and (Neu5Ac)GM3. The expression of CMP-KDN synthetase was shown to be temporally correlated with development and to parallel the developmental expression of (KDN)GM3 in sperm.

摘要

糖核苷酸胞苷5'-(3-脱氧-D-甘油-D-半乳糖-2-壬酮糖酸磷酸酯)(CMP-KDN)有望作为含KDN糖缀合物合成中KDN残基的供体。我们在此报告CMP-KDN合成酶的鉴定和特性,这是一种负责从KDN和CTP合成CMP-KDN的新型酶。该酶从虹鳟(Oncorhynchus mykiss)睾丸中部分纯化得到,KDN神经节苷脂最初就是在那里被发现的(Yu, S., Kitajima, K., Inoue, S., and Inoue, Y. (1991) J. Biol. Chem. 266, 21929 - 21935),并用于合成CMP-[14C]KDN,通过1H NMR对其进行了表征。Vmax/Km研究表明,与N-乙酰神经氨酸(Neu5Ac)或N-羟乙酰神经氨酸(Neu5Gc)相比,KDN是更优的壬酮糖酸底物(对于KDN为4.4×10(-3) min-1,而对于Neu5Ac和Neu5Gc分别为2.3和1.8×10(-3) min-1)。CMP-KDN合成酶活性在pH 9 - 10和25℃时最高。Mg2+或Mn2+的存在对CMP-KDN合成酶活性至关重要。相对于1 mM Mg2+,25 mM Mg2+刺激CMP-KDN的形成超过10倍,但仅刺激CMP-Neu5Ac和CMP-Neu5Gc的形成4倍。使用混合底物的动力学研究表明,部分纯化酶中的CMP-KDN和CMP-Neu5Ac合成酶活性均归因于单一酶的同一活性位点。相反,Neu5Ac和Neu5Gc是小牛脑CMP-唾液酸合成酶更优的壬酮糖酸底物。因此,哺乳动物CMP-唾液酸合成酶识别相似但又明显不同的底物特异性决定因素。因此,虹鳟睾丸酶被认为可合成(KDN)GM3和(Neu5Ac)GM3合成所需的活化糖核苷酸。CMP-KDN合成酶的表达在时间上与发育相关,并与精子中(KDN)GM3的发育表达平行。

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