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一种参与悬浮培养的矮生菜豆(菜豆)细胞中与蛋白质相关的木葡聚糖合成的木糖基转移酶及其与葡糖基转移酶的相互作用。

A xylosyltransferase involved in the synthesis of a protein-associated xyloglucan in suspension-cultured dwarf-French-bean (Phaseolus vulgaris) cells and its interaction with a glucosyltransferase.

作者信息

Campbell R E, Brett C T, Hillman J R

机构信息

Department of Botany, University of Glasgow, Scotland, U.K.

出版信息

Biochem J. 1988 Aug 1;253(3):795-800. doi: 10.1042/bj2530795.

Abstract

A particulate enzyme preparation made from suspension-cultured dwarf-French-bean (Phaseolus vulgaris) cv. Canadian Wonder cells was shown to incorporate xylose from UDP-D-[14C]xylose into polysaccharide. The reaction was dependent upon the presence of UDP-D-glucose and was stimulated, and apparently protected, by GDP-D-glucose and GDP-D-mannose, though neither was able to replace UDP-D-glucose as a glycosyl donor. The product of the reaction was identified as xyloglucan by analysis of products of enzyme breakdown and acid hydrolysis. Mr determination after proteinase K digestion indicated that the nascent xyloglucan is closely associated with protein. Preincubation of the enzyme with UDP-D-glucose stimulated incorporation from UDP-D-[14C]xylose, suggesting an 'imprecise' mechanism of biosynthesis, as defined by Waldron & Brett [(1985) in Biochemistry of Plant Cell Walls (Brett, C. T. & Hillman, J. R., eds.) (SEB Semin. Ser. 28), pp. 79-97, Cambridge University Press, Cambridge].

摘要

由悬浮培养的矮生菜豆(菜豆属普通菜豆品种加拿大奇迹)细胞制成的颗粒状酶制剂,被证明能将UDP-D-[14C]木糖中的木糖掺入多糖中。该反应依赖于UDP-D-葡萄糖的存在,并且受到GDP-D-葡萄糖和GDP-D-甘露糖的刺激,且显然受到保护,尽管它们都不能替代UDP-D-葡萄糖作为糖基供体。通过对酶解产物和酸水解产物的分析,将反应产物鉴定为木葡聚糖。蛋白酶K消化后的分子量测定表明,新生的木葡聚糖与蛋白质紧密相关。酶与UDP-D-葡萄糖预孵育会刺激UDP-D-[14C]木糖的掺入,这表明生物合成机制是“不精确的”,正如Waldron和Brett所定义的那样[(1985年)《植物细胞壁生物化学》(Brett, C. T.和Hillman, J. R.编)(SEB研讨会系列28),第79 - 97页,剑桥大学出版社,剑桥]。

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