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苜蓿中华根瘤菌的ExoK和ExsH聚糖酶能特异性地解聚新生的琥珀酰聚糖链。

The Rhizobium meliloti ExoK and ExsH glycanases specifically depolymerize nascent succinoglycan chains.

作者信息

York G M, Walker G C

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Apr 28;95(9):4912-7. doi: 10.1073/pnas.95.9.4912.

Abstract

The Rhizobium meliloti ExoK and ExsH glycanases have been proposed to contribute to production of low molecular weight (LMW) succinoglycan by depolymerizing high molecular weight succinoglycan chains in R. meliloti cultures. We expressed and purified ExoK and ExsH and determined that neither enzyme can extensively cleave succinoglycan prepared from R. meliloti cultures, although neutral/heat treatment and acid/heat treatment convert succinoglycan to forms that can be cleaved efficiently by both enzymes. These results were somewhat surprising, given that the exoK+ and exsH+ genes play a crucial role in production of LMW succinoglycan in R. meliloti cultures. We demonstrated by Western blot analyses that R. meliloti expresses ExoK and ExsH, that both proteins can be detected extracellularly, and that ExsH secretion depends on the prsD+/prsE+ genes, consistent with previous predictions based on mutant analyses. Furthermore, we determined that the depolymerization activities associated with purified ExoK and ExsH are comparable with exoK+ and exsH+-dependent depolymerization activities expressed in R. meliloti cultures. We resolved the apparent contradiction between the results of our previous genetic analyses and depolymerization assays by determining that ExoK and ExsH can cleave high molecular weight succinoglycan that is being produced actively by R. meliloti, but not succinoglycan that has accumulated in cultures, to yield LMW succinoglycan. We propose that ExoK and ExsH dynamically regulate the molecular weight distribution of succinoglycan by cleaving nascent succinoglycan only during a limited period after its synthesis, perhaps before it undergoes a time-dependent change in its conformation or aggregation state.

摘要

有人提出,苜蓿中华根瘤菌的外切聚糖酶ExoK和ExsH通过解聚苜蓿中华根瘤菌培养物中的高分子量琥珀酰聚糖链,有助于低分子量(LMW)琥珀酰聚糖的产生。我们表达并纯化了ExoK和ExsH,确定这两种酶都不能广泛切割从苜蓿中华根瘤菌培养物中制备的琥珀酰聚糖,尽管中性/热处理和酸/热处理可将琥珀酰聚糖转化为可被这两种酶有效切割的形式。鉴于exoK+和exsH+基因在苜蓿中华根瘤菌培养物中低分子量琥珀酰聚糖的产生中起关键作用,这些结果有些令人惊讶。我们通过蛋白质免疫印迹分析证明,苜蓿中华根瘤菌表达ExoK和ExsH,这两种蛋白质都能在细胞外被检测到,并且ExsH的分泌依赖于prsD+/prsE+基因,这与之前基于突变分析的预测一致。此外,我们确定与纯化的ExoK和ExsH相关的解聚活性与苜蓿中华根瘤菌培养物中表达的exoK+和exsH+依赖性解聚活性相当。我们通过确定ExoK和ExsH可以切割苜蓿中华根瘤菌正在积极产生的高分子量琥珀酰聚糖,但不能切割培养物中积累的琥珀酰聚糖,以产生低分子量琥珀酰聚糖,解决了我们之前的遗传分析结果和解聚测定之间明显的矛盾。我们提出,ExoK和ExsH通过仅在合成后有限的时间内切割新生的琥珀酰聚糖来动态调节琥珀酰聚糖的分子量分布,也许是在其构象或聚集状态发生时间依赖性变化之前。

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