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SHI, Y.

Publications and source records attributed to SHI, Y..

3 recordsLinked to original sources

Elucidating the Diversity and Potential Function of Ribosomally Synthesized and Post-translationally Modified Peptides in the Human Microbiome

The human microbiome holds tremendous potential for generating specialized peptides, specifically ribosomally synthesized and post-translationally modified peptides (RiPPs), significantly affecting human health by mediating interactions with other microbes and the human host. However, the capacity of our microbiome to produce these peptides and their links with human health are poorly understood. This study systematically analyzes 306,481 human microbiota-associated genomes, uncovering a broad array of yet-to-be-discovered RiPPs. These RiPPs are distributed across various body sites but show a specific enrichment in the gut and oral microbiome. Big data omics analysis reveals that numerous RiPP families are inversely related to various diseases, suggesting their potential protective effects on health. For a proof of principle study, guided by biosynthetic prediction, nine autoinducing peptides (AIPs) were chemically synthesized for in vitro and ex vivo assay. Our findings revealed that five AIPs effectively inhibited the biofilm formation of disease-associated pathogens, with one demonstrating significant anti-inflammatory capabilities. Furthermore, when ex vivo testing gut bacteria from mice with inflammatory bowel disease, we observed that two AIPs could regulate the microbial community and reduce harmful species. These findings highlight the vast potential of human microbial RiPPs in regulating microbial communities and maintaining human health, emphasizing their potential for therapeutic development.

microbiology↗

A Series of Composited Tumor DNA Reference Materials Containing Three Genes and Ten Mutation Positions for CNV and SNV Detection

Processes in clinic for tumors diagnosis and treatment need reference materials (RMs) to evaluate and calibrate. However, no RMs can provides properties of copy number variation (CNV) and single nucleotide variants (SNV) of genes EGFR, HER2, MET, PIK3CA, KRAS, BRAF, NRAS simultaneously. In this study, we used commercial cell lines to construct a series of tumor RMs containing property mentioned above. Furthermore, we evaluated their stability, homogeneity, and commutability by droplet digital PCR and next generation sequencing technology. The results showed that, for tumor CNV gDNA RM, the copy number is 7.3 copies/L (EGFR), 5.3 copies/L (HER2) and 8.2 copies/L (MET). For tumor 5% SNV gDNA RM, the mutation frequency of each mutation position showed as follow: EGFR-E746A750 (24.6%), EGFR-L858R (5.8%), EGFR-T790M (5.5%), EGFR-G719S (6.6%), PIK3CA-E545K (4.7%), PIK3CA-H1047R (5.8%), KRAS-G13D (8.2%), KRAS-G12D (6.5%), BRAF-V600E (4.6%), NRAS-Q61K (8.5%). All variable coefficient (CV) of tumor gDNA RM for homogeneity were less than 7%, that of CNV+SNV ctDNA RM were less than 17%. Besides, the CV for commutability of the all types of RMs were less than 17%. These RMs can be applied into a wide range type of sequencing panels and provides a closer simple background.

molecular biology↗

Circulating Microparticles: Optimization and Standardization of Isolation Protocols and Reassessment of Their Characteristics and Functions

Microparticles (MPs) are convenient for clinical diagnosis, and have functional roles in signal transduction. Although the importance of MPs is being increasingly recognized, the diversity of isolated protocols for MPs results in a heterogeneous population of their unknown origins, even expands to uncertain functions. Here we systematically studied the composition of MPs at different centrifugal speed intervals, and found that 3000g was a critical centrifugation speed in determining new MPs composition. The platelet-derived particles accounted for more than 80% under 3000g, while only about 20% in MPs obtained over 3000g. Furthermore, we found that the function of new MPs was significantly different from that of traditional ones, such as procoagulation activity, anti-inflammation and clinical diagnosis etc. Thus, our work optimized the method of MPs isolation, clarified some characteristics and physiological functions that should belong to platelets rather than MPs, which will derive new conceptual MPs for its composition and function.

cell biology↗