Search bioRxiv⌕ Search

Biology subjects

Nguyen, T. K.

Publications and source records attributed to Nguyen, T. K..

3 recordsLinked to original sources

Emx2 is an essential regulator of ciliated cell development across embryonic tissues

Cilia are hair-like organelles with vital physiological roles, and ciliogenesis defects underlie a range of severe congenital malformations and human diseases. Here, we report that the empty spiracles homeobox gene 2 (emx2) transcription factor is essential for cilia development across multiple embryonic tissues including the ear, neuromasts and Kupffers vesicle (KV), which establishes left/right axial pattern. emx2 deficient embryos manifest altered fluid homeostasis and kidney defects including decreased multiciliated cells (MCCs), revealing that emx2 is essential to properly establish several renal lineages as well. Further, emx2 deficiency disrupted ciliogenesis on renal monociliated cells and MCCs, and led to aberrant basal body positioning in kidney cells. Interestingly, we discovered that emx2 deficiency was associated with reduced expression of key factors which regulate prostaglandin biosynthesis: the transcriptional regulator peroxisome proliferator-activated receptor gamma 1 alpha (ppargc1a) and its downstream target prostaglandin-endoperoxide synthase 1 (ptgs1), which encodes a crucial enzyme for production of the prostanoid ligand prostaglandin E2 (PGE2). Importantly, both ciliogenesis and renal fate changes were rescued when emx2 deficient embryos were provided with PGE2 or transcripts encoding ptgs1 or ppargc1a. Taken together, our findings reveal new essential roles of emx2 in cilia development across several tissues, and identify emx2 as a critical, novel regulator of prostaglandin biosynthesis during renal development and ciliogenesis.

developmental biology↗

A study of genetic variants associated with skin traits in the Vietnamese population

BackgroundMost skin-related traits have been studied from Caucasian genetic background. A comprehensive study on skin-associated genetic effects on under-represented populations like Vietnam is needed to fill the gaps in the field. ObjectivesTo develop a computational pipeline to predict the effect of genetic factors on skin traits using public data (GWAS catalogs and whole genome sequencing (WGS) data of 1000 genomes project-1KGP) and in-house Vietnamese data (WGS and genotyping by SNP array). By using this information we may have a better understanding of the susceptibility of Vietnamese people. MethodsVietnamese cohorts of whole genome sequencing (WGS) of 1008 healthy individuals for the reference and 96 genotyping samples (which do not have any skin cutaneous issues) by Infinium Asian Screening Array-24 v1.0 BeadChip were employed to predict skin-associated genetic variants of 25 skin-related and micronutrients requirement traits in population analysis and correlation analysis. Simultaneously, we compared the landscape of cutaneous issues of Vietnamese people with other populations by assessing their genetic profiles. ResultsThe skin-related genetic profile of Vietnamese cohorts is similar at most with East Asian (JPT: Fst=0.036, CHB: Fst=0.031, CHS: Fst=0.027, CDX: Fst=0.025) in the population study. In addition, we identified pairs of skin traits being at high risk of frequent co-occurrence (such as skin aging and wrinkles (r = 0.45, p =1.50e-5) or collagen degradation and moisturizing (r = 0.35, p = 1.1e-3). ConclusionThis is the first investigation in Vietnam to explore genetic variants of facial skin. These findings could improve inadequate skin-related genetic diversity in the currently published database.

bioinformatics↗

Holographic stimulation of opposing amygdala ensembles bidirectionally modulates valence-specific behavior

The basolateral amygdala (BLA) is an evolutionarily conserved brain region, well known for valence processing. Despite this central role, the relationship between activity of BLA neuronal ensembles in response to appetitive and aversive stimuli and the subsequent expression of valence-specific behavior has remained elusive. Here we leverage 2-photon calcium imaging combined with single cell holographic photostimulation through an endoscopic lens implanted in the deep brain to demonstrate a direct causal role for discrete ensembles of BLA neurons in the control of oppositely valenced behavior. We report that targeted photostimulation of individual groups of appetitive or aversive BLA neurons shifts behavioral responses toward those behaviors which recruited a specific consumption or avoidance ensemble. Here we identify that neuronal encoding of valence in the BLA is graded and relies on the relative proportion of individual BLA neurons recruited in a stable appetitive or aversive ensemble.

neuroscience↗