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A noncanonical role of glycolytic metabolites controlling the timing of mouse embryo segmentation.

Studies on the impact of metabolism on cell fate decisions are seeing a renaissance. However, a key challenge remains to distinguish signaling functions of metabolism from its canonical bioenergetic and biosynthetic roles, which underlie cellular homeostasis. Here, we tackled this challenge using mouse embryonic axis segmentation as an experimental model. First, we found that energetically subminimal amounts of glucose can support ongoing segmentation clock activity, providing evidence that glycolysis exerts a signaling function. Using a dynamical systems approach based on entrainment, we identified fructose 1,6-bisphosphate (FBP) as the potential signaling metabolite. Functionally, we demonstrated that glycolytic flux/FBP control the segmentation clock period and Wnt signaling in an anticorrelated manner. Critically, we showed that the slow segmentation clock phenotype caused by elevated glycolysis is mediated by Wnt signaling rather than cellular bioenergetic and biosynthetic state. Combined, our results demonstrate a modular organization of metabolic functions, revealing a signaling module of glycolysis that can be decoupled from its canonical metabolic functions.

Animals

11β-HSD2 buffers fetal glucocorticoid exposure inducing Per1 expression under maternal stress.

Glucocorticoids (GCs) have been proposed as maternal-fetal communication signals. However, fetal circadian rhythms are initially shielded from maternal entrainment, in addition to delayed circadian clock emergence due to CLOCK suppression. Premature CLOCK/BMAL1 activation disrupts Hes7-driven somite-like structure in gastruloids. Given the genomic proximity of Per1 to Hes7 and their transcriptional ripple effect, the physiological significance of delayed cell-autonomous circadian clock development and the temporal program of maternal-fetal communication during the developmental process has remained unclear. Here, based on a marked decline in Hsd11b2, encoding a GC-inactivating 11β-HSD2 enzyme, during organogenesis, we performed split-litter embryo-transfer experiments in which Hsd11b2 knockout (KO) and wild-type embryos shared the same maternal environment. Amniotic fluid GCs remained low and arrhythmic under basal conditions. In contrast, maternal stress caused a pronounced GC surge and Per1 induction in KO, suggesting that 11β-HSD2 buffers acute maternal GC surges. Despite the genomic proximity of Per1 to Hes7 and their transcriptional ripple effect, stress-associated and pharmacological GC exposure recapitulated no overt segmentation defects in vivo. Embryonic stem cell-derived gastruloid assays confirmed that neither GC exposure nor Per1 induction arrested Hes7 oscillations, whereas premature CLOCK/BMAL1 activation impaired these processes even in Hes7 KO gastruloid with ectopic rescue, suggesting that interference with the segmentation clock is mediated by premature CLOCK/BMAL1 activation, not by GC-induced Per1 expression. These findings clearly show that maternal GC signals are selectively buffered during early development. In addition, suppression of CLOCK/BMAL1 activity preserves segmentation clock function, indicating delayed circadian clock emergence is actively regulated during embryogenesis.

11β-HSD2

Systematic differences in protein stability underlie species-specific developmental tempo.

Human embryonic development proceeds more slowly than in mice. The segmentation clock offers a tractable model for studying species-specific developmental tempo, as its oscillation period in human induced presomitic mesoderm (iPSM) cells is approximately twice that of mouse. While the core clock gene HES7 exhibits slower protein degradation in human cells, it remains unclear whether such cross-species differences in protein stability reflect a general principle. Here, we perform a dynamic stable isotope labeling of amino acids in cell culture (SILAC)-based proteomic analysis of ∼5,000 proteins in human and mouse iPSM, and we uncover a broad trend of slower protein degradation in human cells, regardless of subcellular localization or degradation pathways. Moreover, inhibition of glycolysis in mouse iPSM partially phenocopies the human protein stability profile, and modulation of protein stability alters the tempo of both the segmentation clock and cellular differentiation. Our findings establish protein stability, with systematic differences across species, as a key mediator linking metabolism to developmental tempo.

Animals

Timing control accuracy in normal speakers and stutterers.

This study attempted to assess the abilities of 10 normal speakers, five stutterers in therapy, and five stutterers no longer in therapy, to control the time program of repeated utterances. The speech sample comprised repeated sentences, paragraphs, and nursery rhymes, and a finger-tapping task was included as a control. Temporal accuracy was measured. Results suggest that (1) there is a wide range of timing abilities, even among the normal speakers, with considerable overlap between the different groups of speakers; (2) on most of the experimental tasks, normal speakers are more accurate timers than are stutterers; (3) stutterers released from therapy are more accurate timers than are stutterers still in therapy, whenever these groups differ; and (4) subjects' speech timing scores correlate moderately with their tapping scores. These results are discussed in terms of (1) theoretical timing control processes, such as a neural clock for controlling speech segment durations, and a speech motor output buffer, whose capacity may be limited in stutterers, and (2) known effects of rhythmic constraints and respiratory irregularity on fluency.

Female

Spatiotemporal patterns of Rift Valley fever virus in Africa: a retrospective genomic epidemiology and phylodynamic modelling study.

BACKGROUND: Rift Valley fever virus (RVFV) is a mosquito-borne zoonotic pathogen causing outbreaks in humans and ruminants across Africa and the Arabian Peninsula. Originally restricted to the Great Rift Valley, RVFV has expanded geographically, prompting its classification by WHO as a pathogen of pandemic potential. We investigated the evolutionary and spatial dynamics of RVFV across Africa. METHODS: We used genomic data generated at the International Livestock Research Institute Nairobi genomic laboratory (BioProject PRJNA1106221) and combined with publicly available datasets retrieved from the National Center for Biotechnology (NCBI) GenBank nucleotide database. In retrieving RVFV genome sequences from the NCBI GenBank, we applied the search terms "Rift Valley fever virus segment L AND 6404[SLEN]", "Rift Valley fever virus segment M AND 3885[SLEN]", and "Rift Valley fever virus segment S AND 1520:1690[SLEN]" for L (Large), M (Medium), and S (Small) segments, respectively. For sequences without additional spatiotemporal information, we searched PubMed to extract the associated sequence metadata. We performed molecular clock analysis, phylogenetic inference, phylodynamic modelling (continuous phylogeographic reconstruction), and landscape phylogeography on the three RVFV genome segments (L, M, and S). We aimed to assess evolutionary rates, dispersal patterns, and environmental drivers. Focus was placed on lineage C, the most widely distributed variant. FINDINGS: The global dataset used in this study consisted of large (n=236), medium (n=237), and small (n=247), which were further filtered to exclude potential reassortants and vaccine strains. Genome sequences retrieved from NCBI GenBank database comprised large (n=180), medium (n=184), and small (n=202). The genome sequences from retrospective human and livestock isolates comprised large (n=56), medium (n=53), and small (n=45) collected in Burundi (2018), Kenya (2007, 2018, 2019, 2021, and 2022), and Rwanda (2018 and 2022). Our dataset revealed that RVFV exhibited low overall genetic diversity. Lineage C, however, showed evidence of active evolution, with substitution rates ranging from 3·58 × 10-4 to 9·76 × 10-4 substitutions per site per year. This lineage probably originated in Zimbabwe in the mid-1970s and has since expanded across eastern and southern Africa. Phylogeographic reconstructions revealed rapid spread, with diffusion coefficients exceeding 50 000 km2 per year. INTERPRETATION: Lineage C appears capable of establishing endemic transmission in new regions, with ongoing diversification observed during interepidemic periods. These observations reinforce the value of continuous genomic surveillance, particularly during cryptic transmission phases when adaptive mutations might emerge. Although further evidence is needed, observed trends in climate variability and land-use change point to the potential benefit of targeted surveillance in settings that could be at increased risk, including urban centres and wetlands. FUNDING: This work was supported by the German Federal Ministry for Economic Cooperation and Development, the Rockefeller Foundation, and the Africa Centres for Disease Control and Prevention.

Rift Valley fever virus

[Lack of tolerance after administration of delayed-action isosorbide-5-mononitrate for 3 days in patients with exercise-induced silent ischemia: control with placebo].

In order to assess the development of tolerance we analyzed in a placebo-controlled study the effect of monotherapy with isosorbide-5-mononitrate (IS-5-MN) 60 mg in a controlled release formulation (Durules) once-a-day. The IS-5-MN was evaluated after the first dose and after once-a-day therapy for three days in 11 ambulatory patients (10 males, 1 female, aged 54 +/- 9 years) with stable exercise-induced silent myocardial ischaemia and significant coronary stenoses. The drug was given at 8 o'clock in the morning, and a bicycle ergometer exercise test was performed after 4 hours. The ST segment depression was evaluated by a computer-assisted system. Standing blood pressure decreased during all three periods of active treatment with IS-5-MN, (in comparison with placebo p < 0.001 and p < 0.01, p < 0.01 respectively). Heart rate did not change significantly. Compared with placebo baseline values, ischaemic threshold increased during the first day of treatment (188 sec, p < 0.0001 at 4 hours), and to a lesser extent both in second (103 sec, p < 0.003) and third day (116 sec, p < 0.003). The total exercise time increased during all three days of active therapy but significantly so only during the first day. The exercise stress test performed in the 5th day during placebo demonstrated a high reproducibility of ischaemic-threshold (235 vs 241 sec, p: ns), implying that the improvement during the active treatment with IS-5-MN was not due to a "training effect". Headache in 2 patients was the only significant side-effect.(ABSTRACT TRUNCATED AT 250 WORDS)

Delayed-Action Preparations

Time perception: effects of sex and sound intensity on scales of subjective duration.

Six women and six men reproduced ten time intervals varying in logarithmic steps between 1.3 and 20 s. The durations were indicated by white noise of 10, 25, 40 and 55 dB SL, different sound intensities in different sessions. It was found that (i) greater sound intensity entails shorter reproductions, and (ii) reproductions by male observers are shorter than those by female, although for both (i) and (ii) there is an interaction with the standard durations. The data were treated in accordance with the "parallel-clock model" (Eisler, 1975), whereby the parameters of the psychophysical power function are determined from duration reproduction data. As in previous experiments (Eisler, 1975), the data showed a break in the function entailing two segments. The effect of sound intensity could be attributed to the exponent, which was lower for stronger noise, and the effect of sex to the weight coefficient of the upper relative to the lower segment of the psychophysical function, the coefficient being lower for men.

Adult

Gonioscopic changes in eyes with posterior chamber intraocular lenses.

The aim of this study is to determine the effects of posterior chamber implantation on angle structures. First, without previous knowledge of the position of lens haptics, 360 degrees gonioscopy was performed and any changes in the angle structures were recorded. Then, the pupil was dilated to determine the exact position of the intraocular lens haptics. The apposition of peripheral iris to angle structures or, at least, the narrowing of the angle corresponding to the lens haptic position was observed in almost all of the 117 examined eyes, with no difference found between bag and sulcus implantation. Peripheral anterior synechia overlying the lens haptic was observed in 49 (41.8%) of 117 eyes. Interestingly, we also noted that there was marked and well-limited clumping of pigment in the angle at 6 o'clock position in 67 (57.2%) of 117 eyes. In conclusion, we feel that posterior chamber intraocular lenses are not completely innocuous to the angle structures.

Adult