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Ng, J. K.-W.

Publications and source records attributed to Ng, J. K.-W..

2 recordsLinked to original sources

Comprehensive Allergen Profile of Blomia tropicalis Provides Insights into the Component-Resolved Diagnosis of Mite Allergy

BackgroundBlomia (B.) tropicalis, as an important species of house dust mites (HDMs), plays a critical role in allergic diseases in tropical populations, but its allergen components are less investigated than those of other HDMs. Multiple omics methods have largely improved the identification of mite allergens. Here, we sought to identify a comprehensive allergen profile of B. tropicalis and advance the allergen component-resolved diagnosis (CRD) of mite allergy. MethodsReference mite allergen sequences were searched in a high-quality genome of B. tropicalis. Comparative analysis was performed for important allergen groups. ELISA was used to assess the allergenicities of recombinant proteins of specific allergens. ResultsA complete allergen profile of B. tropicalis was revealed, including thirty-seven allergen groups (up to Blo t 42). In-depth comparative analysis not only determined the homology of major allergen groups 5 and 21 but also shed light on the emergence and divergence of chitin-binding allergens. The specific Blo t 12 was identified to be a chitin-binding protein originating from the chitinase of allergen group 15. Immunoassays of recombinant proteins verified three novel allergens and the ELISA results suggested geographical differences in the B. tropicalis sensitization rate. ConclusionsThe comprehensive allergen profile revealed in B. tropicalis, the comparative analysis of allergen groups and the immunoassay assessment of recombinant proteins largely expanded our knowledge to B. tropicalis allergens and could ultimately benefit the CRD of HDM allergy.

immunology↗

Massive Horizontal Gene Transfer in Amphioxus Illuminates the Early Evolution of Deuterostomes

Amphioxus is considered the best-known living proxy to the chordate ancestor and an irreplaceable model organism for evolutionary studies of chordates and deuterostomes. In this study, a high-quality genome of the Beihai amphioxus, Branchiostoma belcheri beihai, was de novo assembled and annotated. Within four amphioxus genomes, twenty-eight groups of gene novelties were identified, revealing new genes that lack homologs in non-deuterostome metazoa, but share unexpectedly high similarities with those from non-metazoan species. These gene innovation events have played roles in amphioxus adaptations, including innate immunity responses, glycolysis, and regulation of calcium balance. The gene novelties related to innate immunity, such as a group of lipoxygenases and a DEAD-box helicase, boosted amphioxus immune responses. The novel genes for alcohol dehydrogenase and ferredoxin could aid in the glycolysis of amphioxus. A proximally arrayed cluster of EF-hand calcium-binding protein genes were identified to resemble those of bacteria. The copy number of this gene cluster was negatively correlated to the sea salinity of the collection region, suggesting that it may enhance their survival at different calcium concentrations. This comprehensive study collectively reveals insights into adaptive evolution of cephalochordates and provides valuable resources for research on early evolution of deuterostomes.

evolutionary biology↗