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一般說明
人ST6Gal-1(β半乳糖苷α-2,6-唾液酸转移酶1)是CAZy家族GT29的成员。
應用
α来自美人鱼发光杆菌(Photobacterium damsela) 的-2,6-唾液酸转移酶已被用于HRT-18G细胞中唾液酸(SA)的再唾液酸化(resialylation)和恢复。
高活性α 2-6唾液酸转移酶已用于制备高级别的的二唾液酸化片段晶体。
生化/生理作用
α复杂的N-聚糖生物合成的最终步骤是由-2,6-唾液酸转移酶(ST)催化。与真核生物α(2,6)-ST相比,细菌α(2,6)-ST具有更广泛的受体底物特异性。
唾液酸转移酶可将Neu5Ac从CMP-Neu5Ac转移至受体分子(包括糖蛋白、糖脂和寡糖)的半乳糖基末端。
單位定義
在37℃,pH8.0条件下,一个单位每分钟可催化由CMP-Neu-5-Ac和Lac-β-OMU形成1 μmol Neu-5-Ac-α -2,6-LacMU。
外觀
以含有Tris-HCl和NaCl的冻干粉末形式提供。
分析報告
酶活性测定在含有CMP-Neu-5-Ac(1 mM)和Lac-β−OMU(1 mM)的Tris-HCl缓冲液(100 mM,pH 8.0)中于37°C进行30分钟,并使用带有荧光检测器(激发波长325nm,发射波长372nm)的HPLC进行分析。
儲存類別代碼
11 - Combustible Solids
水污染物質分類(WGK)
WGK 3
閃點(°F)
Not applicable
閃點(°C)
Not applicable
其他客户在看
High-quality production of human alpha-2, 6-sialyltransferase in Pichia pastoris requires control over N-terminal truncations by host-inherent protease activities
Ribitsch D, et al.
Microbial cell factories, 13, 138-138 (2014)
Jung-Jin Park et al.
Biochemical pharmacology, 83(7), 849-857 (2012-01-24)
β-Galactoside α2,6-sialyltransferase (ST6Gal-I) has been shown to catalyze α2,6 sialylation of N-glycan, an action that is highly correlated with colon cancer progression and metastasis. We have recently demonstrated that ST6Gal-I-induced α2,6 sialylation is critical for adhesion and migration of colon
Tatsuya Kato et al.
Journal of bioscience and bioengineering, 113(6), 694-696 (2012-02-09)
Modified polyhedrin promoter (Ppolh) was designed by repeating burst sequences (BSs) and adopted to overexpress rat α2,6-sialyltransferase (ST6Gal I) in silkworm. Modified Ppolh of five BSs with VLF-1 coexpression yielded 2.9 U/ml ST6Gal I activity and 32.5 mU/mg specific activity
Miyako Nakano et al.
Molecular & cellular proteomics : MCP, 10(11), M111-M111 (2011-08-24)
Resistance to tubulin-binding agents used in cancer is often multifactorial and can include changes in drug accumulation and modified expression of tubulin isotypes. Glycans on cell membrane proteins play important roles in many cellular processes such as recognition and apoptosis
Enhanced Bacterial alpha (2, 6)-Sialyltransferase Reaction through an Inhibition of Its Inherent Sialidase Activity by Dephosphorylation of Cytidine-5'-Monophosphate
Kang JY, et al.
PLoS ONE, 10(7), e0133739-e0133739 (2015)
商品
Glycosyltransferases were initially considered to be specific for a single glycosyl donor and acceptor, which led to the one enzyme-one linkage concept. Subsequent observations have refuted the theory of absolute enzymatic specificity by describing the transfer of analogs of some nucleoside mono- or diphosphate sugar donors.
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