Σάββατο 15 Δεκεμβρίου 2018

Metformin Affects Heme Function as a Possible Mechanism of Action

Metformin elicits pleiotropic effects that are beneficial for treating diabetes, and as well as particular cancers and aging. In spite of its importance, a convincing and unifying mechanism to explain how metformin operates is lacking. Here we describe investigations into the mechanism of metformin action through heme and hemoprotein(s). Metformin suppresses heme production by 50% in yeast, and this suppression requires mitochondria function, which is necessary for heme synthesis. At high concentrations comparable to those in the clinic, metformin also suppresses heme production in human erythrocytes, erythropoietic cells and hepatocytes by 30-50%; the heme-targeting drug artemisinin operates at a greater potency. Significantly, metformin prevents oxidation of heme in three protein scaffolds, cytochrome c, myoglobin and hemoglobin, with Kd values < 3 mM suggesting a dual oxidation and reduction role in the regulation of heme redox transition. Since heme- and porphyrin-like groups operate in diverse enzymes that control important metabolic processes, we suggest that metformin acts, at least in part, through stabilizing appropriate redox states in heme and other porphyrin-containing groups to control cellular metabolism.



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Mapping Oat Crown Rust Resistance Gene Pc45 Confirms Association with PcKM

Molecular mapping of crown rust resistance genes is important to effectively utilize these genes and improve breeding efficiency through marker-assisted selection. Pc45 is a major race-specific crown rust resistance gene initially identified in the wild hexaploid oat Avena sterilis in the early 1970s. This gene was transferred to cultivated oat (Avena sativa) and has been used as a differential for identification of crown rust races since 1974. Previous research identified an association between virulence to Pc45 and PcKM, a crown rust resistance gene in the varieties 'Kame' and 'Morton'. This study was undertaken to reveal the relationship between Pc45 and PcKM. Pc45 was studied in the crosses 'AC Morgan'/Pc45 and 'Kasztan'/Pc45, where Pc45 is the differential line carrying Pc45. F2 progenies and F2:3 families of both populations were inoculated with the crown rust isolate CR258 (race NTGG) and single gene segregation ratios were observed. SNP markers for PcKM were tested on these populations and linkage maps were generated. In addition, 17 newly developed SNP markers identified from genotyping-by-sequencing (GBS) data were mapped in these two populations, plus another three populations segregating for Pc45 or PcKM. Pc45 and PcKM mapped to the same location of Mrg08 (chromosome 12D) of the oat chromosome-anchored consensus map. These results strongly suggest that Pc45 and PcKM are the same resistance gene, but allelism (i.e. functionally different alleles of the same gene) or tight linkage (i.e. two tightly linked genes) cannot be ruled out based on the present data.



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Cover Image

Journal of Oral Rehabilitation Cover Image

The cover image, by Ariyan Mottaghi et al., is based on the Review Article Is there a higher prevalence of tinnitus in patients with temporomandibular disorders? A systematic review and meta‐analysis DOI: 10.1111/joor.12706.




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Issue Information



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Interneuron NMDA receptors change the gear of motor learning in the cerebellar machine



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Development of somatic markers guiding decision-making along adolescence

Publication date: Available online 15 December 2018

Source: International Journal of Psychophysiology

Author(s): Serra Sandor, Hakan Gürvit



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Distinct neural responses to social and semantic violations: An N400 study

Publication date: Available online 14 December 2018

Source: International Journal of Psychophysiology

Author(s): Natalie R. Weimer, Sheri L. Clark, Antonio L. Freitas

Abstract

We investigated event-related brain potential correlates of encountering context-incongruent social information. Building on evidence that information semantically incongruent with its context elicits an N400 response (a prominent negative-going deflection in the ongoing electroencephalogram; EEG), we hypothesized that statements incongruent (relative to congruent) with basic standards of amicable treatment by others (e.g., "Your friend breaks your computer and then laughs [apologizes]") would elicit larger-amplitude N400 responses. EEG was recorded from N = 20 undergraduates while they viewed 106 semantic-dimension and 106 social-dimension sentences. We obtained the classic N400 effect to semantic violations, but we did not observe greater N400 amplitudes to incongruent than to congruent social-dimension sentences. Our findings of N400 modulation by semantic violations but not social norm violations help clarify potential boundary conditions for eliciting the N400.



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