首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Lacto-N-biosidase Encoded by a Novel Gene of Bifidobacterium longum Subspecies longum Shows Unique Substrate Specificity and Requires a Designated Chaperone for Its Active Expression
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Lacto-N-biosidase Encoded by a Novel Gene of Bifidobacterium longum Subspecies longum Shows Unique Substrate Specificity and Requires a Designated Chaperone for Its Active Expression

机译:长双歧杆菌长种亚种的新基因编码的乳酸-N-生物杀伤酶显示独特的底物特异性并需要为其活性表达指定伴侣。

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摘要

Infant gut-associated bifidobacteria possess species-specific enzymatic sets to assimilate human milk oligosaccharides, and lacto-N-biosidase (LNBase) is a key enzyme that degrades lacto-N-tetraose (Galβ1–3GlcNAcβ1–3Galβ1–4Glc), the main component of human milk oligosaccharides, to lacto-N-biose I (Galβ1–3GlcNAc) and lactose. We have previously identified LNBase activity in Bifidobacterium bifidum and some strains of Bifidobacterium longum subsp. longum (B. longum). Subsequently, we isolated a glycoside hydrolase family 20 (GH20) LNBase from B. bifidum; however, the genome of the LNBase+ strain of B. longum contains no GH20 LNBase homolog. Here, we reveal that locus tags BLLJ_1505 and BLLJ_1506 constitute LNBase from B. longum JCM1217. The gene products, designated LnbX and LnbY, respectively, showed no sequence similarity to previously characterized proteins. The purified enzyme, which consisted of LnbX only, hydrolyzed via a retaining mechanism the GlcNAcβ1–3Gal linkage in lacto-N-tetraose, lacto-N-fucopentaose I (Fucα1–2Galβ1–3GlcNAcβ1–3Galβ1–4Glc), and sialyllacto-N-tetraose a (Neu5Acα2–3Galβ1–3GlcNAcβ1–3Galβ1–4Gal); the latter two are not hydrolyzed by GH20 LNBase. Among the chromogenic substrates examined, the enzyme acted on p-nitrophenyl (pNP)-β-lacto-N-bioside I (Galβ1–3GlcNAcβ-pNP) and GalNAcβ1–3GlcNAcβ-pNP. GalNAcβ1–3GlcNAcβ linkage has been found in O-mannosyl glycans of α-dystroglycan. Therefore, the enzyme may serve as a new tool for examining glycan structures. In vitro refolding experiments revealed that LnbY and metal ions (Ca2+ and Mg2+) are required for proper folding of LnbX. The LnbX and LnbY homologs have been found only in B. bifidum, B. longum, and a few gut microbes, suggesting that the proteins have evolved in specialized niches.
机译:婴儿肠道相关双歧杆菌具有特定种类的酶集合来吸收人乳寡糖,而乳酸-N-生物苷酶(LNBase)是降解乳酸-N-四糖(Galβ1-3GlcNAcβ1-3Galβ1-4Glc)的关键酶。牛奶中的低聚糖,乳糖N-二糖I(Galβ1-3GlcNAc)和乳糖。我们先前已经确定了双歧杆菌和长双歧杆菌亚种的某些菌株中的LNBase活性。 longum(B. longum)。随后,我们从双歧双歧杆菌分离了糖苷水解酶家族20(GH20)LNBase。然而,长双歧杆菌的LNBase + 菌株的基因组不包含GH20 LNBase同源物。在这里,我们揭示了基因座标签BLLJ_1505和BLLJ_1506构成了长双歧杆菌JCM1217的LNBase。分别命名为LnbX和LnbY的基因产物与先前鉴定的蛋白质没有序列相似性。纯化的酶仅由LnbX组成,通过保留机制水解了乳酸N-四糖,乳酸N-富半乳糖I(Fucα1-2Galβ1-3GlcNAcβ1-3Galβ1-4Glc)和唾液酸内酯N-N-中的GlcNAcβ1-3Gal键四糖a(Neu5Acα2-3Galβ1-3GlcNAcβ1-3Galβ1-4Gal);后两个不会被GH20 LNBase水解。在检测的生色底物中,该酶作用于对硝基苯基(pNP)-β-乳糖-N-生物苷I(Galβ1-3GlcNAcβ- p NP)和GalNAcβ1-3-3GlcNAcβ- p < / em> NP。在α-dystroglycan的 O -甘露糖基聚糖中发现了GalNAcβ1-3GlcNAcβ连接。因此,该酶可以作为检查聚糖结构的新工具。 体外折叠实验表明,LnbX的正确折叠需要LnbY和金属离子(Ca 2 + 和Mg 2 + )。仅在 B中发现了LnbX和LnbY同源物。 bifidum B。 longum 和一些肠道微生物,表明这些蛋白质已在专门的生态位中进化。

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