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Differentiation of O-acetyl and O-carbamoyl esters of N-acetyl-glucosamine by decomposition of their oxonium ions. Application to the structure of the nonreducing terminal residue of Nod factors.

作者信息

Treilhou M, Ferro M, Monteiro C, Poinsot V, Jabbouri S, Kanony C, Promé D, Promé J C

机构信息

Laboratoire des Interactions Moléculaires et Réactivité Chimique et Photochimique, Université Paul Sabatier, Toulouse, France.

出版信息

J Am Soc Mass Spectrom. 2000 Apr;11(4):301-11. doi: 10.1016/s1044-0305(99)00152-x.

DOI:10.1016/s1044-0305(99)00152-x
PMID:10757166
Abstract

Nod factors are substituted N-acyl chito-oligomers secreted by plant symbiotic bacteria of the Rhizobium family. Substitutions on the oligosaccharide core specify their recognition by host plants. A method using tandem mass spectrometry is proposed to locate the O-acetyl and O-carbamoyl substituents on the nonreducing terminal residue of the chito-oligomers. As model compounds, all the positional isomers of monoacetyl and monocarbamoyl esters of 1-O-methyl-N-acetyl-alpha-D-glucosamine were synthesized. Oxonium ions (MH - CH3OH)+ were generated by liquid secondary ion mass spectrometry (LSIMS) and their decomposition was recorded on a tandem magnetic instrument. Large differences were observed in the relative abundances of ions resulting from elimination of water and of the O-ester substituent from metastable oxonium ions. Deuterium exchange reactions indicated parallel elimination pathways involving either exchangeable or carbon-linked hydrogens. The intensity ratios of some of the ions generated by collisions with helium atoms allowed the isomers to be distinguished. The main dissociation routes were identified. Metastable and collision-induced decomposition of the B1 ions from Nod factors of Sinorhizobium meliloti and Azorhizobium caulinodans resembled that of the 6-O-substituted N-acetylglucosamine models. Decomposition of the B1 ion from Mesorhizobium loti and Rhizobium etli Nod factors, was similar to that of 3-O-carbamoyl N-acetyl-glucosamine and different to that of the 4-O isomer. 6-O- and 3-O-carbamoylation specified by the nodU and nolO genes, respectively, of Rhizobium. sp. NGR234 were confirmed.

摘要

相似文献

1
Differentiation of O-acetyl and O-carbamoyl esters of N-acetyl-glucosamine by decomposition of their oxonium ions. Application to the structure of the nonreducing terminal residue of Nod factors.
J Am Soc Mass Spectrom. 2000 Apr;11(4):301-11. doi: 10.1016/s1044-0305(99)00152-x.
2
nolO and noeI (HsnIII) of Rhizobium sp. NGR234 are involved in 3-O-carbamoylation and 2-O-methylation of Nod factors.根瘤菌NGR234的nolO和noeI(HsnIII)参与结瘤因子的3-O-氨甲酰化和2-O-甲基化。
J Biol Chem. 1998 May 15;273(20):12047-55. doi: 10.1074/jbc.273.20.12047.
3
Involvement of nodS in N-methylation and nodU in 6-O-carbamoylation of Rhizobium sp. NGR234 nod factors.根瘤菌NGR234结瘤因子中nodS参与N-甲基化以及nodU参与6-O-氨甲酰化作用
J Biol Chem. 1995 Sep 29;270(39):22968-73. doi: 10.1074/jbc.270.39.22968.
4
Rhizobium sp. strain NGR234 NodZ protein is a fucosyltransferase.根瘤菌属NGR234菌株的NodZ蛋白是一种岩藻糖基转移酶。
J Bacteriol. 1997 Aug;179(16):5087-93. doi: 10.1128/jb.179.16.5087-5093.1997.
5
Novel branched nod factor structure results from alpha-(1-->3) fucosyl transferase activity: the major lipo-chitin oligosaccharides from Mesorhizobium loti strain NZP2213 bear an alpha-(1-->3) fucosyl substituent on a nonterminal backbone residue.新型分支结瘤因子结构源于α-(1→3)岩藻糖基转移酶活性:来自百脉根中生根瘤菌菌株NZP2213的主要脂壳寡糖在非末端主链残基上带有一个α-(1→3)岩藻糖基取代基。
Biochemistry. 1998 Jun 23;37(25):9024-32. doi: 10.1021/bi972937r.
6
In vitro sulfotransferase activity of NoeE, a nodulation protein of Rhizobium sp. NGR234.根瘤菌NGR234的结瘤蛋白NoeE的体外磺基转移酶活性
Mol Plant Microbe Interact. 1998 Jul;11(7):592-600. doi: 10.1094/MPMI.1998.11.7.592.
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Trends in the Periodic System: the mass spectrum of dimethylphenyl phosphane and a comparison of the gas phase reactivity of dimethylphenyl pnictogene radical cations C(6)H(5)E(CH(3))(2)(*+), (E = N, P, As)(dagger).元素周期系中的趋势:二甲基苯基膦的质谱以及二甲基苯基氮族元素自由基阳离子C(6)H(5)E(CH(3))(2)(*+)(E = N、P、As)(†)的气相反应活性比较
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8
Three unusual modifications, a D-arabinosyl, an N-methyl, and a carbamoyl group, are present on the Nod factors of Azorhizobium caulinodans strain ORS571.在茎瘤固氮根瘤菌菌株ORS571的结瘤因子上存在三种不同寻常的修饰,即一个D-阿拉伯糖基、一个N-甲基和一个氨甲酰基。
Proc Natl Acad Sci U S A. 1993 Feb 15;90(4):1551-5. doi: 10.1073/pnas.90.4.1551.
9
In situ formation of C-glycosides during electrospray ionization tandem mass spectrometry of a series of synthetic amphiphilic cholesteryl polyethoxy neoglycolipids containing N-acetyl-D-glucosamine.在一系列含有N-乙酰-D-葡萄糖胺的合成两亲性胆固醇基聚乙氧基新糖脂的电喷雾电离串联质谱分析过程中C-糖苷的原位形成。
J Am Soc Mass Spectrom. 2005 Apr;16(4):565-70. doi: 10.1016/j.jasms.2005.01.003.
10
Nodulation factors from Rhizobium tropici are sulfated or nonsulfated chitopentasaccharides containing an N-methyl-N-acylglucosaminyl terminus.来自热带根瘤菌的结瘤因子是含有N-甲基-N-酰基葡糖胺基末端的硫酸化或非硫酸化的壳五糖。
Biochemistry. 1993 Oct 5;32(39):10430-5. doi: 10.1021/bi00090a019.

引用本文的文献

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Unusual methyl-branched alpha,beta-unsaturated acyl chain substitutions in the Nod Factors of an arctic rhizobium, Mesorhizobium sp. strain N33 (Oxytropis arctobia).北极根瘤菌中慢生根瘤菌属N33菌株(北极棘豆根瘤菌)的结瘤因子中异常的甲基支链α,β-不饱和酰基链取代
J Bacteriol. 2001 Jun;183(12):3721-8. doi: 10.1128/JB.183.12.3721-3728.2001.
2
Simultaneous analysis of butene isomer mixtures using process mass spectrometry.使用过程质谱法同时分析丁烯异构体混合物。
J Am Soc Mass Spectrom. 2000 Dec;11(12):1079-85. doi: 10.1016/S1044-0305(00)00182-3.
3
Bradyrhizobium sp. Strains that nodulate the leguminous tree Acacia albida produce fucosylated and partially sulfated nod factors.

本文引用的文献

1
Symbiotic Nitrogen Fixation.共生固氮作用
Plant Cell. 1995 Jul;7(7):869-885. doi: 10.1105/tpc.7.7.869.
2
The nolL gene from Rhizobium etli determines nodulation efficiency by mediating the acetylation of the fucosyl residue in the nodulation factor.来自墨西哥根瘤菌的nolL基因通过介导结瘤因子中岩藻糖基残基的乙酰化作用来决定结瘤效率。
Mol Plant Microbe Interact. 1999 Mar;12(3):236-46. doi: 10.1094/MPMI.1999.12.3.236.
3
Novel branched nod factor structure results from alpha-(1-->3) fucosyl transferase activity: the major lipo-chitin oligosaccharides from Mesorhizobium loti strain NZP2213 bear an alpha-(1-->3) fucosyl substituent on a nonterminal backbone residue.
能使豆科树木阿拉伯胶树结瘤的慢生根瘤菌菌株会产生岩藻糖基化且部分硫酸化的结瘤因子。
Appl Environ Microbiol. 2000 Nov;66(11):5078-82. doi: 10.1128/AEM.66.11.5078-5082.2000.
新型分支结瘤因子结构源于α-(1→3)岩藻糖基转移酶活性:来自百脉根中生根瘤菌菌株NZP2213的主要脂壳寡糖在非末端主链残基上带有一个α-(1→3)岩藻糖基取代基。
Biochemistry. 1998 Jun 23;37(25):9024-32. doi: 10.1021/bi972937r.
4
Biosynthesis and secretion of rhizobial lipochitin-oligosaccharide signal molecules.根瘤菌脂壳寡糖信号分子的生物合成与分泌
Subcell Biochem. 1998;29:29-71. doi: 10.1007/978-1-4899-1707-2_2.
5
nolO and noeI (HsnIII) of Rhizobium sp. NGR234 are involved in 3-O-carbamoylation and 2-O-methylation of Nod factors.根瘤菌NGR234的nolO和noeI(HsnIII)参与结瘤因子的3-O-氨甲酰化和2-O-甲基化。
J Biol Chem. 1998 May 15;273(20):12047-55. doi: 10.1074/jbc.273.20.12047.
6
Molecular mechanisms of Nod factor diversity.结瘤因子多样性的分子机制
Mol Microbiol. 1997 Sep;25(5):811-7. doi: 10.1111/j.1365-2958.1997.mmi526.x.
7
Rhizobium lipo-chitooligosaccharide nodulation factors: signaling molecules mediating recognition and morphogenesis.根瘤菌脂壳寡糖结瘤因子:介导识别与形态发生的信号分子
Annu Rev Biochem. 1996;65:503-35. doi: 10.1146/annurev.bi.65.070196.002443.
8
Isolation, chemical structures and biological activity of the lipo-chitin oligosaccharide nodulation signals from Rhizobium etli.费氏中华根瘤菌脂壳寡糖结瘤信号的分离、化学结构及生物活性
Plant Mol Biol. 1995 Nov;29(3):453-64. doi: 10.1007/BF00020977.
9
Three unusual modifications, a D-arabinosyl, an N-methyl, and a carbamoyl group, are present on the Nod factors of Azorhizobium caulinodans strain ORS571.在茎瘤固氮根瘤菌菌株ORS571的结瘤因子上存在三种不同寻常的修饰,即一个D-阿拉伯糖基、一个N-甲基和一个氨甲酰基。
Proc Natl Acad Sci U S A. 1993 Feb 15;90(4):1551-5. doi: 10.1073/pnas.90.4.1551.
10
Nod factors of Rhizobium are a key to the legume door.根瘤菌的结瘤因子是打开豆科植物大门的钥匙。
Mol Microbiol. 1994 Jul;13(1):171-8. doi: 10.1111/j.1365-2958.1994.tb00412.x.