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Optimization, Characteristics, and Functions of Alkaline Phosphatase From Escherichia coli.

Yachao Dong | Yandong Xia | Jie Yin | Diao Zhou | Yidan Sang | Sufeng Yan | Qingshu Liu | Yaqi Li | Leli Wang | Ying Zhao | Cang Chen | Qiuyun Huang | Ying Wang | Muhammad Nazeer Abbasi | Huansheng Yang | Chuni Wang | Jianzhong Li | Qiang Tu | Jia Yin
Frontiers in microbiology | 2021

Weaning of piglets could increase the risk of infecting with Gram-negative pathogens, which can further bring about a wide array of virulence factors including the endotoxin lipopolysaccharide (LPS). It is in common practice that the use of antibiotics has been restricted in animal husbandry. Alkaline phosphatase (AKP) plays an important role in the detoxification and anti-inflammatory effects of LPS. This study investigated the protective effects of AKP on intestinal epithelial cells during inflammation. Site-directed mutagenesis was performed to modulate the AKP activity. The enzyme activity tests showed that the activity of the DelSigD153G-D330N mutants in B. subtilis was nearly 1,600 times higher than that of the wild-type AKP. In this study, an in vitro LPS-induced inflammation model using IPEC-J2 cells was established. The mRNA expression of interleukin-(IL-) 6, IL-8, and tumor necrosis factor-α (TNF-α) were extremely significantly downregulated, and that of ASC amino acid transporter 2 (ASCT-2), zonula occludens protein-1 (ZO-1), and occludin-3 (CLDN-3) were significantly upregulated by the DelSigD153G-D330N mutant compared with LPS treatment. This concludes the anti-inflammatory role of AKP on epithelial membrane, and we are hopeful that this research could achieve a sustainable development for the pig industry.

Pubmed ID: 35265047

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SignalP (tool)

RRID:SCR_015644

Web application for prediction of the presence and location of signal peptide cleavage sites in amino acid sequences from different organisms. The method incorporates a prediction of cleavage sites and a signal peptide/non-signal peptide prediction based on a combination of several artificial neural networks.

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IPEC-J2 (tool)

RRID:CVCL_2246

Cell line IPEC-J2 is a Spontaneously immortalized cell line with a species of origin Sus scrofa

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