Publications by authors named "H A Ferris"

We briefly review the history and development of recognizing nematode assemblages as indicators of environmental conditions. We highlight the effects of spatio-temporal successional changes in nematode assemblages on the auto-regeneration of ecosystem functions after disturbance. We expand on the need for herbivory components in the analysis of soil nematode assemblages in recognition of the important impact of plant parasitism on the resources and productivity of the soil system.

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Article Synopsis
  • The study explores how different diets affect weight and metabolism in genetically diverse mouse strains, highlighting that individual genetic makeups influence these responses.
  • Mice were subjected to various humanized diets (American, Mediterranean, vegetarian, and vegan), revealing significant variations in body weight, triglyceride, and insulin levels based on both diet and genetic strain.
  • Specifically, around 400 genes related to metabolism responded differently to diets in various strains, suggesting that while genetics strongly influences metabolism, dietary choices also play a crucial role, paving the way for research into personalized nutrition for humans.
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Objectives: Prognostic models have the potential to aid clinical decision-making after hip fracture. This systematic review aimed to identify, critically appraise, and summarize multivariable prediction models for mortality or other long-term recovery outcomes occurring at least 30 days after hip fracture.

Study Design And Setting: MEDLINE, Embase, Scopus, Web of Science, and CINAHL databases were searched up to May 2023.

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Lymphoid restricted membrane protein (LRMP) is a specific regulator of the hyperpolarization-activated cyclic nucleotide-sensitive isoform 4 (HCN4) channel. LRMP prevents cAMP-dependent potentiation of HCN4, but the interaction domains, mechanisms of action, and basis for isoform-specificity remain unknown. Here, we identify the domains of LRMP essential for this regulation, show that LRMP acts by disrupting the intramolecular signal transduction between cyclic nucleotide binding and gating, and demonstrate that multiple unique regions in HCN4 are required for LRMP isoform-specificity.

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Rapid conversion of force into a biological signal enables living cells to respond to mechanical forces in their environment. The force is believed to initially affect the plasma membrane and then alter the behavior of membrane proteins. Phospholipase D2 (PLD2) is a mechanosensitive enzyme that is regulated by a structured membrane-lipid site comprised of cholesterol and saturated ganglioside (GM1).

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