Publications by authors named "G J Schenk"

Importance: Traumatic brain injury (TBI) is associated with chronic medical conditions. Evidence from diverse clinical administrative datasets may improve care delivery.

Objective: To characterize post-TBI risk of incident neuropsychiatric and medical conditions in a California health care system administrative database and validate findings from a Massachusetts dataset.

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Processive endoglucanases have generated significant interest due to their bifunctionality in the degradation of cellulose and low product inhibition. However, enhancing their catalytic efficiency through engineering remains a formidable challenge. To address this bottleneck, our engineering efforts targeted loop regions located in the substrate channel of processive endoglucanase EG5C-1.

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Article Synopsis
  • The study aims to establish an enzyme-driven bioleaching pathway for extracting copper, focusing on the Type-1 copper protein rusticyanin from Acidithiobacillus ferrooxidans (AfR).
  • Comparisons were made with an ancestral form of rusticyanin (N0) and an archaeal version from Ferroplasma acidiphilum (FaR), revealing that while N0 and FaR have similar redox potentials to AfR, their electron transport rates are significantly slower.
  • The findings indicate that AfR has evolved for efficient energy conversion during iron oxidation, and newly observed behavior of AfR involves a partially unfolded state, which could affect its stability and has implications for optimizing it for bioleaching applications.
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Objective: Multiple sclerosis (MS) is a chronic central nervous system disease whose white matter lesion origin remains debated. Recently, we reported subtle changes in the MS normal appearing white matter (NAWM), presenting with an increase in myelin blisters and myelin protein citrullination, which may recapitulate some of the prodromal degenerative processes involved in MS pathogenesis. Here, to clarify the relevance of these changes for subsequent MS myelin degeneration we explored their prevalence in WM regions characterized by subtly reduced myelination (dubbed as micro-diffusely abnormal white matter, mDAWM).

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Oxidoreductases play crucial roles in electron transfer during biological redox reactions. These reactions are not exclusive to protein-based biocatalysts; nano-size (<100 nm), fine-grained inorganic colloids, such as iron oxides and sulfides, also participate. These nanocolloids exhibit intrinsic redox activity and possess direct electron transfer capacities comparable to their biological counterparts.

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