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Biology subjects

Zang, W.

Publications and source records attributed to Zang, W..

3 recordsLinked to original sources

Histone variant H2A.Z is required for plant salt response by regulating gene transcription

As a well-conserved histone variant, H2A.Z epigenetically regulates plant growth and development as well as the interaction with environmental factors. However, the role of H2A.Z in response to salt stress remains unclear, and whether nucleosomal H2A.Z occupancy work on the gene responsiveness upon salinity is obscure. Here, we elucidate the involvement of H2A.Z in salt response by analyzing H2A.Z disorder plants with impaired or overloaded H2A.Z deposition. The salt tolerance is dramatically accompanied by H2A.Z deficiency and reacquired in H2A.Z OE lines. H2A.Z disorder changes the expression profiles of large-scale of salt responsive genes, announcing that H2A.Z is required for plant salt response. Genome-wide H2A.Z mapping shows that H2A.Z level is induced by salt condition across promoter, TSS and TES (-1 kb to +1kb), the peaks preferentially enrich at promoter regions near TSS. We further show that H2A.Z deposition within TSS provides a direct role on transcriptional control, which has both repressive and activating effects, while it is found generally H2A.Z enrichment negatively correlate with gene expression level response to salt stress. This study shed light on the H2A.Z function in salt tolerance, highlighting the complex regulatory mechanisms of H2A.Z on transcriptional activity for yielding appropriate responses to particularly environmental stress.

plant biology↗

A murine commensal protozoan relieves Clostridium difficile infection through regulating the arginine metabolism and the host intestinal immune response

Antibiotic-induced dysbiosis is a key predisposing factor for Clostridium difficile infection (CDI), fecal microbiota transplantation (FMT) is recommended for treating CDI. However, the mechanisms remain unclear. Here, we uncover that one integral member of the murine gut microbiota, a commensal protozoan from mice, Tritrichomonas musculis (T. mu), that reduced intestinal damage by inhibiting the recruitment of neutrophil and secretion of IL-1{beta}, and increased Th1 cell differentiation and secretion of IFN-{gamma}, which increased the goblet cell and secretion of mucin to protect the intestinal mucosa. The T. mu upregulated the key enzymes of arginine metabolism iNOS, ASS, OTC and down-regulated ARG1 in CDI mice, resulting in an increase in arginine, citrulline and a decrease in ornithine, which worked together to regulate the host intestinal immune response and alleviate CDI. This work reveals the interaction mechanism between intestinal commensal eukaryotes and pathogenic bacteria, and also provide new ideas for treating CDI.

microbiology↗

Construction of epithelial-mesenchymal transition related miRNAs signatures as prognostic biomarkers in gastric cancer patients

AimTo identify the potential post-healing EMT related miRNAs associated with lymph node metastatic gastric cancer (LNMGC). MethodsBoth RNA expression and clinical medical data were obtained from the TCGA dataset. We performed differential expression and normalization analysis of miRNAs. Cox linear regression model confirmed the differentially expressed miRNAs (DEmiRNAs) and clinical medical parameters related to overall survival (OS). The role of target genes of DEmiRNAs was determined according to the role enrichment analysis. ResultsWe obtained a total of 7531 DEmRNAs and 267 DEmRNAs, of which 185 DEmRNAs were down-regulated and 82 DEmRNAs were up-regulated. We randomly divided the LMNGC cases (n=291) into a training group (n=207) and a test group (n=84). The results showed that a total of 103, 11, 13 and 83 overlapping genes were associated with hsa-mir-141-3p, hsa-mir-4664-3p, hsa-mir-125b-5p and hsa-mir-7-5p, respectively. Kaplan-Meier determined that these four miRNAs can effectively distinguish high-risk and low-risk groups, and have a good indicator role (all p<0.05). Multivariate cox regression analysis also showed that EMT-related miRNA predictive model and lymph node metastasis were both prognostic risk factors (all p<0.05). The ROC curve showed that this feature had high accuracy (AUC>0.7, p<0.05). In addition, KEGG analysis showed that EMT-related pathways were mainly enriched in HIF-1 signaling pathway and focal adhesion. ConclusionsOur study demonstrated that EMT-related miRNAs could serve as independent prognostic markers in pN1-3 GC patients.

cancer biology↗