Publications by authors named "J Geiser"

Motivation: Transcription factors (TFs) are DNA-binding proteins that regulate gene expression. Traditional methods predict a protein as a TF if the protein contains any DNA-binding domains (DBDs) of known TFs. However, this approach fails to identify a novel TF that does not contain any known DBDs.

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RNA helicases-central enzymes in RNA metabolism-often feature intrinsically disordered regions (IDRs) that enable phase separation and complex molecular interactions. In the bacterial pathogen Pseudomonas aeruginosa, the non-redundant RhlE1 and RhlE2 RNA helicases share a conserved REC catalytic core but differ in C-terminal IDRs. Here, we show how the IDR diversity defines RhlE RNA helicase specificity of function.

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Article Synopsis
  • The study aimed to analyze how glucagon behaves in the body (pharmacokinetics) and its effects on blood sugar (pharmacodynamics) after being given as an injection or nasal spray, specifically confirming a suitable nasal glucagon dose for adults.
  • Six clinical studies focused on glucagon levels, while five examined its impact on glucose, involving over 6,000 glucagon and 7,000 glucose measurements from 265 participants.
  • The results indicated that a 3 mg dose of nasal glucagon effectively raises blood sugar levels in more than 99% of hypoglycemic adults, making it the recommended dosage for emergency treatment.
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  • Researchers studied cyclopentadiene (CP) after exciting it with light at 243 nm using advanced X-ray techniques at LCLS.
  • They found direct evidence that CP quickly transforms into bicyclo[2.1.0]pentene (BP), a unique molecule with strained rings.
  • BP reverts back to CP over about 21 picoseconds, with a smaller proportion of reactions occurring on a subpicosecond timescale.
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Monolayers self-assembled by triphenyleneethynylene (TPE) compounds bearing two terminal alkynyl chains were polymerized by Glaser-Hay (G-H) alkyne coupling at the acetonitrile-HOPG interface. The alkynyl chains extend into the solution due to the monolayer's dense-packed morphology. Reacting substructures that have no morphology-determining roles is a potential strategy for preserving monolayer morphology throughout polymerization.

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