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Biomedical subjects

Bowen Zhang

Publications and source records attributed to Bowen Zhang.

4 recordsLinked to original sources

Bacillus thuringiensis pathogenicity islands encode regulatory circuits controlling insecticidal Cry toxin expression during vegetative growth.

Bacillus thuringiensis (Bt) produces insecticidal toxins, including Cry and Vip3 proteins, that are widely used for biological pest control. Cry proteins are classically expressed during sporulation under the control of sporulation-specific σ factors, whereas Vip3 is produced during vegetative growth, suggesting distinct regulatory pathways. Notably, many cry and vip3A genes are clustered within pathogenicity islands (PAIs), such as BtPAI-1. However, whether these PAIs also encode regulatory mechanisms coordinating toxin expression remains unclear. Here, we identify VipR, a BtPAI-1-encoded transcriptional regulator, as an activator of insecticidal gene expression during the vegetative phase in Bt strains HD-1 and CT-43. In these strains, VipR promotes the transcription of BtPAI-1 associated insecticidal genes, including vip3A and selected cry genes, resulting in premature Cry protein accumulation and increased insecticidal activity. In addition, VipR contributes to the vegetative-phase expression of the non-BtPAI-1 cry9Aa genes in strain BGSC 4AE1. Phylogenetic analysis revealed that vipR is widely distributed in one-third of Bt strains, and is strongly associated with PAIs. Futhermore, heterologous expression of vipR in BGSC 4J5 and HD-73 was sufficient to activate vegetative-phase transcription of some cry independently of sporulation-specific σ factor cascade. These results support a role for VipR in coordinating vegetative-phase expression of insecticidal genes in the Bt strains examined and suggest that BtPAI-1 can encode both insecticidal determinants and regulatory functions that influence their expression. These findings provide new insights into the regulatory architecture of Bt pathogenicity islands and may facilitate the engineering of strains with enhanced insecticidal activity.

Bacillus thuringiensis

Cationic porphyrin covalent organic framework reinforced hydroxypropyl methylcellulose films for photodynamic-photothermal sterilization and food preservation.

Microbial contamination in food necessitates effective antimicrobial packaging. While cellulose-based packaging materials suffer from limited antimicrobial efficacy, lack of active functionality, and susceptibility to inducing microbial resistance. To address these challenges, this study synthesized a cationic porphyrin-based covalent organic framework (Por-ICOF) as a multimodal photosensitizer. Por-ICOF was uniformly dispersed via non-covalent interaction within hydroxypropyl methylcellulose (HPMC), creating an HPMC/Por-ICOF composite film. This integration enhanced mechanical strength (increased by 26%), hydrophobicity (WCA 71°), and gas barrier properties (OP reduced by 42%, WVP reduced by 36%). Under visible light, the HPMC/Por ICOF film superior absorption generated reactive oxygen species (ROS) and photothermal effects, inactivating 99.2% of Escherichia coli and 99.95% of Staphylococcus aureus within 20 min. The composite film exhibited excellent biocompatibility and effectively extended the shelf life of strawberries. This cationic modification strategy for cellulose-based films offers a novel avenue for the design of high-performance antimicrobial food packaging materials.

Food Preservation

Compound Heterozygous PCDH15 Variants Associated With Cone-Rod Dystrophy in a Chinese Pedigree.

BACKGROUND: This study aimed to characterize the clinical and genetic features of a Chinese family with cone-rod dystrophy in which compound heterozygous PCDH15 variants were identified. METHODS: A Chinese pedigree with autosomal recessive cone-rod dystrophy was investigated. A comprehensive ophthalmic assessment was performed in the proband, a 42-year-old woman, together with genetic evaluation of her family members. Candidate variants were identified using whole-exome sequencing and subsequently assessed by Sanger sequencing and family segregation analysis. RESULTS: Ophthalmoscopic examination revealed pigmentary changes and atrophic lesions affecting the posterior pole and peripapillary area bilaterally. Optical coherence tomography (OCT) demonstrated bilateral outer retinal layer atrophy with disruption of the ellipsoid zone at the posterior pole. Multifocal electroretinography (mfERG) revealed attenuated central responses, while full-field electroretinography (ffERG) documented a more pronounced reduction in cone-mediated (photopic) responses. Two novel compound heterozygous variants in PCDH15, namely c.4903_4906del (p.Glu1635Lysfs*4) and c.3470C>A (p.Ala1157Glu), were identified in this autosomal recessive cone-rod dystrophy pedigree. Family co-segregation analysis provided supportive evidence for their potential association with the disease phenotype. Cross-species analysis revealed high evolutionary conservation of the PCDH15 protein. Three-dimensional structural modeling predicted potential alterations in protein structure. CONCLUSION: To our knowledge, this is the first report describing an association between compound heterozygous PCDH15 variants and cone-rod dystrophy, thereby providing preliminary evidence that may broaden the mutational spectrum associated with this gene.

Adult

The association between rs2228226 and postoperative clinical outcomes in gastric adenocarcinoma: a retrospective study.

BACKGROUND: This study aims to investigate the differences in postoperative prognosis associated with the single nucleotide polymorphism (SNP) rs2228226 (G&#x2009;>&#x2009;C) in gastric adenocarcinoma (GAC) patients. METHODS: This study enrolled 661 patients with locally advanced (pT4a) GAC after surgery. DNA was extracted from their tissues and genotyped for rs2228226 using a MassARRAY Analyzer. Based on the patients' clinical and pathological information, a multifactorial Cox regression analysis was performed to assess the correlation between rs2228226 and the clinical prognosis of pT4a GAC patients. Survival differences among patients who received postoperative chemotherapy were also examined according to rs2228226. RESULTS: After excluding patients with distant metastasis, loss to follow-up, and those not meeting the inclusion criteria, a total of 463 patients with complete data were included. The rs2228226 genotype distribution was as follows: C/C&#x2009;=&#x2009;57 (12.3%), G/C&#x2009;=&#x2009;200 (43.2%), and G/G&#x2009;=&#x2009;206 (44.5%). Patients with the C/C genotype had significantly shorter disease-free survival (DFS&#x2009;=&#x2009;12&#xa0;months) and overall survival (OS&#x2009;=&#x2009;27&#xa0;months) compared to those with the G/C or G/G genotype (DFS&#x2009;=&#x2009;19&#xa0;months, log-rank P&#x2009;=&#x2009;0.003; OS&#x2009;=&#x2009;35&#xa0;months, log-rank P&#x2009;=&#x2009;0.002). Further analysis of patients receiving chemotherapy identified the C/C genotype, advanced age, lymph node metastasis, degree of differentiation, and failure to achieve R0 resection as independent risk factors for tumor recurrence and metastasis (P&#x2009;<&#x2009;0.05). The C/C genotype, lymph node metastasis, and tumor recurrence and metastasis were independent risk factors for mortality (P&#x2009;<&#x2009;0.05). CONCLUSIONS: In pT4a GAC patients undergoing postoperative chemotherapy, the C/C genotype at rs2228226 is an independent risk factor for tumor recurrence, metastasis, and death. The rs2228226 (G&#x2009;>&#x2009;C) polymorphism may serve as a potential biomarker for predicting prognosis after chemotherapy in GAC.

Humans