首页> 外文期刊>The Journal of biological chemistry >l-Ala-γ-d-Glu-meso-diaminopimelic Acid (DAP) Interacts Directly with Leucine-rich Region Domain of Nucleotide-binding Oligomerization Domain 1, Increasing Phosphorylation Activity of Receptor-interacting Serine/Threonine-protein Kinase 2 and Its Interaction with Nucleotide-binding Oligomerization Domain 1
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l-Ala-γ-d-Glu-meso-diaminopimelic Acid (DAP) Interacts Directly with Leucine-rich Region Domain of Nucleotide-binding Oligomerization Domain 1, Increasing Phosphorylation Activity of Receptor-interacting Serine/Threonine-protein Kinase 2 and Its Interaction with Nucleotide-binding Oligomerization Domain 1

机译:L-ALA-γ-D-Glu-Meso-二氨基丙二酸(DAP)直接与核苷酸结合寡聚化结构域1的幼亮区域结构域相互作用,增加受体相互作用丝氨酸/苏氨酸蛋白激酶2的磷酸化活性及其相互作用核苷酸结合寡聚化结构域1

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The oligopeptide transporter PepT1 expressed in inflamed colonic epithelial cells transports small bacterial peptides, such as muramyl dipeptide (MDP) and l-Ala-γ-d-Glu-meso-diaminopimelic acid (Tri-DAP) into cells. The innate immune system uses various proteins to sense pathogen-associated molecular patterns. Nucleotide-binding oligomerization domain (NOD)-like receptors of which there are more than 20 related family members are present in the cytosol and recognize intracellular ligands. NOD proteins mediate NF-κB activation via receptor-interacting serine/threonine-protein kinase 2 (RICK or RIPK). The specific ligands for some NOD-like receptors have been identified. NOD type 1 (NOD1) is activated by peptides that contain a diaminophilic acid, such as the PepT1 substrate Tri-DAP. In other words, PepT1 transport activity plays an important role in controlling intracellular loading of ligands for NOD1 in turn determining the activation level of downstream inflammatory pathways. However, no direct interaction between Tri-DAP and NOD1 has been identified. In the present work, surface plasmon resonance and atomic force microscopy experiments showed direct binding between NOD1 and Tri-DAP with a Kd value of 34.5 μm. In contrast, no significant binding was evident between muramyl dipeptide and NOD1. Furthermore, leucine-rich region (LRR)-truncated NOD1 did not interact with Tri-DAP, indicating that Tri-DAP interacts with the LRR domain of NOD1. Next, we examined binding between RICK and NOD1 proteins and found that such binding was significant with a Kd value of 4.13 μm. However, NOD1/RICK binding was of higher affinity (Kd of 3.26 μm) when NOD1 was prebound to Tri-DAP. Furthermore, RICK phosphorylation activity was increased when NOD was prebound to Tri-DAP. In conclusion, we have shown that Tri-DAP interacts directly with the LRR domain of NOD1 and consequently increases RICK/NOD1 association and RICK phosphorylation activity.
机译:在发炎的结肠上皮细胞中表达的寡肽转运蛋白Pept1将小细菌肽(例如Muramyl Dipeptide(MDP)和L-Ala-γ-D-glu-Meso-二氨基胺酸(Tri-dap)转化为细胞。先天免疫系统使用各种蛋白质来感测病原体相关的分子模式。核苷酸结合的寡聚化结构域(NOD)的受体,其中存在超过20个相关的族成员的胞质溶胶中存在并识别细胞内配体。 NOD蛋白通过受体相互作用丝氨酸/苏氨酸 - 蛋白激酶2(RICK或RIPK)介导NF-κB活化。已经鉴定了一些类似点状受体的特定配体。 NOD类型1(NOD1)由含有二氨基磷酸的肽激活,例如Pept1衬底三-Dap。换句话说,Pept1运输活性在控制NOD1的骨髓内载荷时起着重要作用,依次确定下游炎性途径的活化水平。但是,已经识别了TRI-DAP和NOD1之间的直接相互作用。在本作工作中,表面等离子体共振和原子力显微镜实验在NOD1和Tri-Dap之间直接结合,Kd值为34.5μm。相反,蛋白质二肽和NOD1之间没有显着的结合明显。此外,富含亮氨酸的区域(LRR) - 触发的NOD1没有与三-DAP相互作用,表明三-DAP与NOD1的LRR结构域相互作用。接下来,我们检查瑞克和Nod1蛋白之间的结合,发现这种结合具有4.13μm的Kd值。然而,当NOD1预达到三-DAP时,NOD1 / RICK结合具有更高的亲和力(KD为3.26μm)。此外,当NOD预达到三-DAP时,RICK磷酸化活性增加。总之,我们已经表明,三-DAP与NOD1的LRR结构域直接相互作用,从而增加Rick / Nod1关联和Rick磷酸化活性。

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