Results 151 to 160 of about 30,607,253 (282)
Type 22 Design C Starboard Side
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Navy Dept. Bureau of C&R, Washington D.C. +1 more
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Frontotemporal Lobar Degeneration-TDP Type C With Striatal Glial Cytoplasmic Inclusions and Motor Neuron Degeneration. [PDF]
Uchino A +7 more
europepmc +1 more source
How do genomes gain new functional parts? In eukaryotes, which tend to evolve under weak selection, much of the genome is junk. Palazzo and Qiu borrow the logic of Markov chains to show how non‐functional DNA becomes functional through the appearance of intermediate states, which arise due to epistasis, buffering, and biochemical messiness, allowing ...
Alexander F. Palazzo, Yi Qiu
wiley +1 more source
Long-term misdiagnosis of Niemann-Pick disease type C as Wilson disease: A case report. [PDF]
Xiang S +5 more
europepmc +1 more source
The Shewanella oneidensis Fic enzyme SoFic targets the switch‐I region of EF‐Tu for AMPylation
Fic enzymes mediate diverse post‐translational modifications across all domains of life, including AMPylation. Prokaryotic EF‐Tu can be AMPylated and deAMPylated by the conserved Fic enzyme SoFic. Structural and biochemical approaches were used to characterize the effect of AMPylation on EF‐Tu, SoFic's enzymatic activities, and the enzyme‐target ...
Svenja Runge +6 more
wiley +1 more source
Respiratory Morbidity After Repair of Type C Esophageal Atresia with Tracheoesophageal Fistula: A Pediatric Case Series. [PDF]
Mihordea CS +8 more
europepmc +1 more source
Synechocystis strains deficient in succinate dehydrogenase (SDH) secrete more succinate than the WT under dark anaerobic conditions, supporting that SDH then primarily acts as SDH, not as a fumarate reductase. L‐aspartate oxidase (Laspo) from Synechocystis is functional under anaerobic conditions, reducing fumarate to succinate.
Kateryna Kukil +3 more
wiley +1 more source
2025 Consensus Clinical Management Guidelines for Niemann-Pick Disease Type C. [PDF]
Hiwot T +33 more
europepmc +1 more source
Artificial molecular machines and motors—Design and control of nanoscale motion
Molecules are constantly moving because of thermal fluctuations, but random motion alone cannot be exploited to perform directional tasks. Artificial molecular machines use chemical, electrical, or light energy to bias this motion. Molecular shuttles, rotary motors, and supramolecular pumps illustrate how nanoscale movement can be controlled and ...
Leonardo Andreoni, Alberto Credi
wiley +1 more source
Bidirectional portal vein reconstruction for type C anatomy in living donor liver transplant. [PDF]
Shams-Ud-Din +5 more
europepmc +1 more source

