Sudden unexplained nocturnal death syndrome (SUNDS), a subtype of sudden unexplained death, predominantly affects young, otherwise healthy individuals, with a higher prevalence in males and a geographic concentration in Southeast Asia, particularly Thailand. Despite extensive investigation, the genetic basis of SUNDS remains incompletely understood. Sarcomeric and non-sarcomeric gene variants were investigated in 98 SUNDS cases using whole-exome sequencing (WES). Postmortem cardiac examination and molecular modeling were performed to assess myocardial abnormalities and the structural impact of selected sarcomeric variants. Eleven missense variants in five sarcomeric genes (MYBPC3, MYH7, TNNI3, TNNT2, and TPM1) were identified in 12 cases (12.2%), whereas 37 variants across 18 non-sarcomeric genes were detected in 29 cases (29.6%). The MYH7 variant c.1562T>C (p.Ile521Thr) was identified as likely pathogenic. Cardiac histopathology revealed heterogeneous myocardial remodeling, including myocyte hypertrophy and interstitial fibrosis; some MYH7 variant carriers showed increased left ventricular wall thickness (>1.5 cm). Molecular modeling of the TPM1 variant c.641A>G (p.Tyr214Cys), located in the hinge region of the tropomyosin-troponin regulatory complex, suggested disruption of a native π-π stacking interaction, potentially affecting thin-filament stability. Sarcomeric variants were associated with heterogeneous myocardial remodeling in SUNDS. These findings highlight the genetic and pathological heterogeneity of SUNDS and suggest that sarcomeric gene variants represent a previously underrecognized contributor to myocardial remodeling and arrhythmogenic risk.
Aummarin Chaloemthanetphong, B. Nutho, Rachtipan Pitiwararom et al.· Journal of Molecular Diagnos...· 0 citations
Hard ticks are important vectors of zoonotic pathogens, including bacteria that cause rickettsiosis, Q fever, and anaplasmosis. In this study, 167 ticks were collected from vegetation in Chiang Mai Province, northern Thailand, and examined using morphological and molecular methods. Five tick species were identified: Dermacentor tamokensis (n = 81), D. bellulus (n = 49), D. pasteuri (n = 9), Ixodes acutitarsus (n = 26), and Haemaphysalis hystricis (n = 2), with the first three species newly characterized at the molecular level. Moreover, D. tamokensis and D. bellulus are newly recorded in Thailand. Phylogenetic analysis using the multilocus sequence analysis (MLSA) approach revealed two distinct genotypic groups of spotted fever group rickettsiae (SFGRs): a novel Candidatus Rickettsia chiangmaiensis in I. acutitarsus (20/26) and Candidatus Rickettsia laoensis in D. tamokensis (12/81) and D. bellulus (10/49). The latter SFGR was closely related to strains found only in western Thailand and Laos. Additionally, Coxiella-like endosymbionts (CLEs) were detected in D. tamokensis (61/81), D. bellulus (13/49), and H. hystricis (1/2), while Anaplasma sp. was found in D. tamokensis (2/81). Notably, double infections: Ca. R. laoensis-CLEs, Anaplasma-CLEs, and a triple infection: Ca. R. laoensis-CLE-Anaplasma were reported herein. These findings demonstrate the diverse bacterial associations in ticks, suggesting the ecological complexity of forested areas in northern Thailand.