Search bioRxiv⌕ Search

Biology subjects

Mkrtchyan, L.

Publications and source records attributed to Mkrtchyan, L..

2 recordsLinked to original sources

Structural conservation of the gabapentinoid binding site in human and Caenorhabditis elegans α2δ subunits: a docking and molecular dynamics perspective

Pain is a global health burden, highlighting the need for effective therapeutic strategies. Gabapentin (GBP) and pregabalin (PGB), used for neuropathic pain, act primarily through 2{delta} auxiliary subunits of voltage-gated calcium channels. Caenorhabditis elegans expresses UNC-36, an ortholog of mammalian 2{delta} proteins involved in calcium-channel function and nocifensive behavior. However, whether UNC-36 preserves the molecular features required for gabapentinoid recognition remains unclear. We compared human 2{delta}-1 and UNC-36 using sequence and structural analyses, molecular docking, 500-ns molecular dynamics simulations, interaction profiling, principal component and free-energy landscape analyses, and MM/GBSA calculations. UNC-36 preserved the overall architecture of the mammalian gabapentinoid-binding region despite substantial sequence divergence, and both ligands remained associated with the modeled pockets. However, residue-level interaction networks differed between species. Human 2{delta}-1 showed greater contributions from aromatic interactions, whereas UNC-36 relied more prominently on cationic and hydrogen-bond donor interactions mediated by Arg501 and Arg503. The human 2{delta}-1-PGB complex maintained the most stable ligand pose, whereas 2{delta}-1-GBP showed greater positional variation. In UNC-36, PGB exhibited greater deviation from its initial binding pose than GBP. The first two principal components accounted for more conformational variance in UNC-36 complexes than in human complexes. MM/GBSA estimates showed that PGB was energetically favored over GBP in human 2{delta}-1, whereas GBP was favored over PGB in UNC-36. These findings show that conservation of the gabapentinoid-binding architecture is accompanied by species-specific differences in interaction chemistry, conformational dynamics, and estimated binding energetics, providing a molecular basis for interpreting C. elegans gabapentinoid responses in a translational context.

molecular biology↗

Plague-driven selection enriched familial Mediterranean fever mutations in Armenia

The discovery that positive selection due to resistance to malarial infection maintained the prevalence of sickle cell and other disease alleles was a landmark in evolution, genetics and epidemiology. Mutations in the MEFV gene causing familial Mediterranean fever with high frequency in Eastern Mediterranean populations give the only other strong candidates for a similar process. Here we estimate a pathogenic MEFV mutation burden in Armenians with a carrier rate of ~41%: a worldwide maximum. By combining these data with regional ancient MEFV genotypes spanning more than 60 centuries, we establish that the allele frequencies of three mutations M694V, M680I, and V726A underwent recent rapid increases, indicating positive selection with an onset consistent with the first Yersinia pestis plague pandemic, ~541 CE to 767 CE or even earlier in time, echoing functional data implying resistance to this infection as the selective agent. This extends to three the number of MEFV variants for which there is evidence for strong concurrent selection at this locus in the Eastern Mediterranean, making it unlikely that this geographic peak resulted from chance alone. Although bubonic plague was extremely widespread, the restricted geography of this selection points toward the Eastern Mediterranean as a longstanding enzootic centre with continuous recycling of outbreaks.

genomics↗