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多萜醇磷酸酯作为大鼠睾丸生殖细胞高尔基体膜甘露糖基转移酶和半乳糖基转移酶的中间体的参与情况。

Involvement of dolichol phosphates as intermediates in the mannosyl and galactosyl transferases of rat testicular germ cell Golgi apparatus membranes.

作者信息

Flanagan K, Scouten W H, Nyquist S E

出版信息

Biol Reprod. 1982 Feb;26(1):147-54. doi: 10.1095/biolreprod26.1.147.

Abstract

Isolated Golgi apparatus membranes from the germinal elements (spermatocytes and early spermatids) of rat testis were examined for their ability to incorporate [14C]mannose and [14C]galactose into glycolipid and glycoprotein fractions. Transfer of mannose from GDP-[14C]mannose into a Lipid I fractions (GPD:MPP mannosyl transferase activity), identified as mannosyl phosphoryl dolichol, showed optimal activity at 1.5 mM manganese and at pH 7.5. Low concentrations of Triton X-100 (0.1%) stimulated transferase activity in the presence of exogenous dolichol phosphate (Dol-P); however, inhibition occurred at Triton X-100 concentrations greater than 0.1%. Maximal activity of this GDP:MPP mannosyl transferase occurred at 25 microM Dol-P. Activity using endogenous acceptor was 2.34 pmole/min/mg, whereas in the presence of 25 microM Dol-P the specific activity was 284 pmole/min/mg, a stimulation of 125-fold. Incorporation of mannose into a Lipid II (oligosaccharide pyrophosphoryl dolichol) and a glycoprotein fraction was also examined. In the absence of exogenous Dol-P, rapid incorporation into Lipid I occurred with a subsequent rise in Lipid II and glycoprotein fractions suggesting precursor-product relationships. Addition of exogenous Dol-P to galactosyl transferase assays showed only a minor stimulation, less than twofold, in all fractions. Over the concentration range of 9.4 to 62.5 micrograms/ml Dol-P, only 1% of radioactive product accumulated in the combined lipid fractions. These observations suggest that the mannose transfer involves Dol-P intermediates and also that spermatocyte Golgi membranes may be involved in formation of the oligosaccharide core as well as in terminal glycosylations.

摘要

对从大鼠睾丸的生精细胞(精母细胞和早期精子细胞)中分离出的高尔基体膜进行检测,以研究其将[14C]甘露糖和[14C]半乳糖掺入糖脂和糖蛋白组分的能力。甘露糖从GDP-[14C]甘露糖转移至脂质I组分(鉴定为甘露糖基磷酸多萜醇的GPD:MPP甘露糖基转移酶活性),在1.5 mM锰和pH 7.5条件下显示出最佳活性。低浓度的Triton X-100(0.1%)在存在外源性磷酸多萜醇(Dol-P)的情况下刺激转移酶活性;然而,当Triton X-100浓度大于0.1%时则发生抑制作用。该GDP:MPP甘露糖基转移酶的最大活性出现在25 microM Dol-P时。使用内源性受体时的活性为2.34皮摩尔/分钟/毫克,而在存在25 microM Dol-P时比活性为284皮摩尔/分钟/毫克,刺激了125倍。还检测了甘露糖掺入脂质II(寡糖焦磷酸多萜醇)和糖蛋白组分的情况。在没有外源性Dol-P的情况下,快速掺入脂质I,随后脂质II和糖蛋白组分增加,表明存在前体-产物关系。在半乳糖基转移酶测定中添加外源性Dol-P在所有组分中仅显示出轻微刺激,小于两倍。在9.4至62.5微克/毫升Dol-P的浓度范围内,仅1%的放射性产物积累在合并的脂质组分中。这些观察结果表明,甘露糖转移涉及Dol-P中间体,并且精母细胞高尔基体膜可能参与寡糖核心的形成以及末端糖基化。

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