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Hussin, A.

Publications and source records attributed to Hussin, A..

2 recordsLinked to original sources

A Novel Amino Acid Deletion and Substitution in amrB Gene Associated with Gentamicin Susceptibility in Burkholderia pseudomallei from Malaysian Borneo

Burkholderia pseudomallei is a highly pathogenic saprophyte that is intrinsically resistant to a wide variety of antibiotics. Resistance to gentamicin is considered as an earmark of B. pseudomallei. However, rare susceptible strains have been isolated in certain regions due to gene mutations. Currently, data on the susceptible strains prevalence and the actual causal mutations are still scarce, particularly in Malaysian Borneo. A pool of B. pseudomallei isolates (n = 46) were screened for gentamicin susceptibility and phenotypically confirmed using the gradient minimum inhibitory concentration method. Three isolates were gentamicin-susceptible strains and were identified as having originated from Bintulu, Sarawak, Malaysian Borneo. The amrB gene mutation in these mutant strains was analysed, and the effect of amino acid substitution on the stability of the amrB protein was determined by using in silico analysis. The mutagenesis analysis identified a polymorphism-associated mutation, g.1056T>G, and two susceptible-associated mutations identified as novel in-frame amino acid deletion p.Val412del and amino acid substitution p.Thr368Arg that compromised gentamicin resistance. In silico analysis using amrB homology-modelled and AlphaFold-solved structures proposed the role of p.Thr368Arg amino acid substitution in conferring GEN susceptibility by other mechanisms than destabilising the structure of amrB protein, which is most probably due to the mutations location in the highly conserved region. The findings have shed light on the phenotypic characteristics and mutations involved in the amrB gene of the gentamicin-susceptible B. pseudomallei.

microbiology↗

Theta- and gamma-band oscillatory uncoupling in the macaque hippocampus

Nested hippocampal oscillations in the rodent give rise to temporal dynamics that may underlie learning, memory, and decision making. Although theta/gamma coupling in rodent CA1 occurs during exploration, in contrast to sharp-wave ripples that emerge in quiescence, it is less clear that these oscillatory regimes extend to primates. We, therefore, sought to identify correspondences in frequency bands, nesting, and behavioral coupling taken from the macaque hippocampus. We found that, in contrast to rodent oscillations, theta and gamma frequency bands in macaque CA1 were segregated by behavioral states. Beta2/gamma (15-70 Hz) had greater power during visual search while the theta band (3-10 Hz; peak [~]8 Hz) dominated during quiescence. Moreover, theta band amplitude was strongest when beta2/slow gamma (20-35 Hz) amplitude was weakest, occurring instead concomitant with higher frequencies (60-150 Hz). Spike-field coherence was most frequently seen in these three bands, (3-10 Hz, 20-35 Hz, and 60-150 Hz); however, the theta-band coherence was largely due to spurious coupling during sharp-wave ripples. Accordingly, no intrinsic theta spiking rhythmicity was apparent. These results support a role for beta2/slow gamma modulation in CA1 during active exploration in the primate that is decoupled from theta oscillations. The apparent difference to the rodent oscillatory canon calls for a shift in focus of frequency when considering the primate hippocampus.

neuroscience↗