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Biology subjects

Munro, L. J.

Publications and source records attributed to Munro, L. J..

2 recordsLinked to original sources

A long-hidden prevalent PCR artifact and its application in DNA library screening

PCR artifacts can lead to aberrant DNA products and confound result interpretation, posing significant challenges in research and diagnostics. Traditionally, it has been blamed to misannealing of primers on unintended sites. However, by sequencing, we find that most PCR byproducts and artifacts actually have both primers bound correctly but lack a middle part of the target, a phenomenon we named as PCR leaping. The leaping occurs at random positions, is independent of sequence repeats and requires a single piece template, indicating an unprecedented mechanism. It is observed with various polymerases, template qualities, GC contents, and PCR programs, thus necessitating a reset of our PCR understanding and careful consideration in future studies, for example in CRISPR editing validations. On the other hand, it provides a simple way of DNA end pairing, based on which we develop a high throughput DNA library screening method for natural product discovery at substantially reduced cost.

molecular biology↗

Structural Determinants for Activity of the Antidepressant Vortioxetine at Human and Rodent 5-HT3 receptors

Vortioxetine (VTX) is a recent antidepressant that targets a variety of serotonin receptors. We investigate the drugs molecular mechanism of operation at serotonin 5-HT3 receptors (5-HT3R), which features two mysterious properties: VTX acts differently on rodent and human 5-HT3R; VTX appears to suppress any subsequent response to agonists. Using a combination of cryo-EM, electrophysiology, and molecular dynamics, we show that VTX stabilizes a resting inhibited state of the mouse 5-HT3R and an agonist bound-like state of the human 5-HT3R, in line with the functional profile of the drug. We report four human 5-HT3R structures and show that the human receptor transmembrane domain is intrinsically fragile. We also explain the lack of recovery after VTX administration via a membrane partition mechanism.

biochemistry↗