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SETD1B-mediated broad H3K4me3 controls proper temporal patterns of gene expression critical for spermatid development.

Epigenetic programming governs cell fate determination during development through intricately controlling sequential gene activation and repression. Although H3K4me3 is widely recognized as a hallmark of gene activation, its role in modulating transcription output and timing within a continuously developing system remains poorly understood. In this study, we provide a detailed characterization of the epigenomic landscapes in developing male germ cells. We identified thousands of spermatid-specific broad H3K4me3 domains regulated by the SETD1B-RFX2 axis, representing a previously underappreciated form of H3K4me3. These domains, overlapping with H3K27ac-marked enhancers and promoters, play critical roles in orchestrating robust transcription and accurate temporal control of gene expression. Mechanistically, these broad H3K4me3 compete effectively with regular H3K4me3 for transcriptional machinery, thereby ensuring robust levels and precise timing of master gene expression in mouse spermiogenesis. Disruption of this mechanism compromises the accuracy of transcription dosage and timing, ultimately impairing spermiogenesis. Additionally, we unveil remarkable changes in the distribution of heterochromatin marks, including H3K27me3 and H3K9me2, during the mitosis-to-meiosis transition and completion of meiotic recombination, which closely correlates with gene silencing. This work underscores the highly orchestrated epigenetic regulation in spermatogenesis, highlighting the previously unrecognized role of Setd1b in the formation of broad H3K4me3 domains and transcriptional control, and provides an invaluable resource for future studies toward the elucidation of spermatogenesis.

Male↗

Metabolites with a message: impacts on epigenetics and implications for epimetabopathies.

Once identified primarily as a bioenergetic organelle, the mitochondrion has now emerged as a pivotal signalling hub that communicates with the nucleus to shape cellular fate. It integrates the cell's metabolic state with transcriptional and epigenetic programs, tweaking gene expression. Mitochondrial metabolites serve as regulators of cellular physiology, functioning as important signalling intermediates and modulating enzymes involved in epigenetic modifications. In parallel, nuclear transcriptional programs govern mitochondrial biogenesis, dynamics and quality control to preserve metabolic homeostasis under stress. Moreover, circulating metabolites can function as systemic messengers coordinating interorgan crosstalk and immune responses. Perturbations in this dynamic reciprocity can rewire the cellular script and spiral into "epimetabopathies", where metabolic-epigenetic conflicts ignite pathological conditions. This review discusses how mitochondria-nucleus crosstalk coordinates genome surveillance, metabolite-driven epigenetic regulation and systemic metabolic signalling. It further offers an overview of epimetabopathies with potential implications for future diagnostics and therapeutics.

Humans↗

The patient transit assistance scheme: the clerk's perspective.

The Patient Transit Assistance Scheme (PTAS) is an important government program designed to ensure equity of access for residents in rural and remote Queensland to essential healthcare services. Where specialist services cannot be provided at recognised hospitals, PTAS ensures equity by accepting the responsibility for assisting with the transport and accommodation of patients and at times their escort, to locations where such services are available. This article presents research findings on the concerns of clerks involved in administering PTAS for patients with leukaemia and associated haematological disorders. The findings indicate that there are many problems with this scheme that need attention and can be remedied.

Administrative Personnel↗

Targeted disruption of caspase genes in mice: what they tell us about the functions of individual caspases in apoptosis.

Cysteine proteases of the caspase family are crucial mediators of apoptosis. All mammalian cells contain a large number of caspases. Although many caspases are activated in a cell committed to apoptosis, recent data from caspase gene knockout mice suggest that individual caspases may be involved in the cell and stimulus-specific pathways of cell death. The gene disruption studies also establish the functional hierarchy between two structurally distinct classes of caspases. The present review discusses these recent findings and elaborates on how these mutant mouse models have helped the understanding of the mechanisms that govern programmed cell death in the immune and other systems.

Adaptor Proteins, Signal Transducing↗

Free markets and the marriage market: structural adjustment, gender relations, and working conditions among Dominican women workers.

The relationship between economic conditions and marriage patterns in the Dominican Republic is analyzed using data collected in 1994 on women working in a free-trade zone. The author concludes that changes associated with structural adjustment appear to have contributed to a deterioration of the job market and a greater prevalence of female-headed households. It is shown that "structural adjustment increases the need for women to work, because of cuts in government programs, declining real wages, growing inflation, and a deterioration in male employment, which weakens the man's role as principal breadwinner and increases the importance and visibility of women's contribution to the household economy. This change in the gender composition of the labor force has encouraged some women to resist marriage and/or remarriage because the ¿marriage market' of eligible men willing and able to support a family has been reduced, contributing to greater marital instability."

Americas↗

Industrial survey of lost time injuries.

An attempt to discover factors affecting lost time injuries under varying government programs involved visits to a sampling of industries in six provinces and six states. The resulting observations are used to illustrate some variables, many of which have previously been ignored, but which must be considered in any objective study of man at work.

Absenteeism↗

The 1986 Samuel C. Harvey lecture: partners in cancer education.

I have attempted to highlight the important contributions of a voluntary health organization committed solely to cancer research, education, and patient service. The involvement of many thousands of volunteers has allowed the American Cancer Society to provide the country with a private sector alternative to government programs. Progress in cancer control through changes in lifestyle will not occur simply through the intervention of federal regulations. It will happen through private initiatives in neighborhoods across the country. It is in these communities that volunteers become the spark for the mission of cancer control. The financial contributions of millions of Americans along with their neighbors' enthusiasm and labors enable the American Cancer Society to provide all of us with vital ways to help ourselves, to train health professional leaders, and to unlock the mysteries of cancer through research. The American Cancer Society and the American Association for Cancer Education are truly partners in cancer education.

American Cancer Society↗

RNA splicing and cardiovascular disease: a guide for cardiologists.

Alternative splicing (AS) is a fundamental RNA processing mechanism, which generates different RNA transcripts and consequently different protein isoforms from a single gene. This increases the diversity of proteins within an organism and can fine-tune biological processes. This review examines how cardiac-enriched RNA-binding proteins establish heart-specific splicing programs governing aspects of cardiac development, function, and disease. Developmentally, coordinated sarcomeric isoform switches underpin the foetal-to-adult transition and further isoform rewiring in ion channel and kinase genes determine electrophysiology and excitation-contraction coupling. AS contributes to the pathogenesis of several cardiomyopathies and emerging datasets suggest that pathological hypertrophy engages distinct splicing signatures compared with physiological hypertrophy. This review summarizes diagnostic and prognostic opportunities arising from bulk, long-read, and single-cell/nucleus transcriptomics, which resolve cell type-specific isoforms and disease-associated switches. Circulating RNA biomarkers (including splice ratios and circularRNAs) may signify myocardial remodelling and arrhythmic risk. Integrative approaches that link AS with proteomics and genomics improve variant interpretation, reveal previously unannotated protein isoforms, and enable tracking of disease progression and therapy response. Finally, an outline of therapeutic strategies to modulate AS in cardiovascular disease (CVD), including antisense oligonucleotides, small molecules, and genome-editing modalities (CRISPR, base, and prime editing), is provided. The major challenges that remain before splice-targeting therapeutics can be targeted to treat cardiovascular disease are highlighted. Lessons from neuromuscular indications establish clinical feasibility of splicing correction and motivate translation to cardiology. Together, mechanistic insight, biomarker development, and therapeutic innovation position RNA splicing as a tractable axis for precision cardiovascular medicine.

Humans↗

Changing attitudes toward aging policy in the United States during the 1980s and 1990s: a cohort analysis.

OBJECTIVES: This research assessed how the attitudes of Americans toward government programs that serve older people changed between the mid-1980s and late 1990s and how much of the shift was dueto intracohort change and how much was due to cohort replacement. METHODS: Data come from three nationally representative cross-sectional samples, surveyed by telephone in 1986 (N = 1.209), 1990 (N = 1,500), and 1997 (N = 1,559). RESULTS: Attitudes of Americans have become less supportive of expanding entitlement programs for older people and more supportive of cutting their costs and benefits. Between 1986 and 1997, most cohorts, particularly older adults, grew more in favor of maintaining Social Security benefit levels but less in favor of expanding them. Young adults tended to be driving the societal shift in attitudes toward decreasing benefits. Intercohort change was more important than cohort replacement in this process. Analyses of change in 2 attitude domains between 1990 and 1997 revealed that the general population felt less strongly that older people are entitled to benefits and expressed greater opposition to the associated costs. However, young adults moderated their concerns about costs as they got older, although the young adults in the cohort replacing them had become more critical of the principle of entitlement. DISCUSSION: These findings enhance the understanding of the roles that historical conditions and aging play in shaping the attitudes of adult cohorts toward public programs for older citizens. Discrepant findings based on the intercohort change in younger age groups are reconciled by differentiating maturation effects from period effects on impressionable youth.

Adolescent↗

Macro- and microlevel processes affect food choice and nutritional status in the republic of the marshall islands.

Despite its relative isolation from the world stage and lack of resources, the Marshall Islands serve as an example of the interaction between global political power, macroeconomic forces and local cultural factors. At the national level, patterns of food importation and government programs encourage the consumption of high fat foods. These factors have fostered dependency on Western foods and a loss of traditional food practices. Beliefs come into play as microlevel factors that influence food choice and aspects of lifestyle. Nearly three quarters of women are overweight or obese in this setting. Obesity in women is associated with greater age, higher education and more imported food consumption. Over a third of children ages 1-5 y are stunted, with stunting associated with worse economic status, less active feeding, increased consumption of imported foods and urban residence. What can be done at the microlevel is constrained by macrolevel factors of disempowerment. In this way, issues of power and belief are played out in the bodies of individuals.

Adult↗

Diet, individual responsiveness and cancer prevention.

Dietary recommendations for the prevention of cancer have been based predominantly on large epidemiological studies of diet and lifestyle, conducted 20, and in some cases, almost 30 years ago. Government programs have been successful in educating the public about the benefits of eating fruits and vegetables, yet despite these efforts, Americans have become heavier, diabetes is more prevalent and general health indicators have not greatly improved. Individual response to dietary recommendations may be complicated by a variety of factors. Polymorphisms in genes related to drug activation and detoxification, folate metabolism, DNA repair, vitamin receptors and other cellular receptors could account for a lack of benefit at the level of the individual for consuming cancer preventive foods. Beyond consideration of genetic polymorphisms, the last half century has brought stark changes in lifestyle that depart from normal diurnal cycle and periodic fluctuations in food availability. Thus, modern times may be characterized as being constantly in a "feast" environment. The cellular consequences may be an increase in risk for several diseases including cancer.

Animals↗

Moving further upstream: from toxics reduction to the precautionary principle.

Early policies to reduce the amount of toxic waste in the environment focused on cleaning up downstream sources of pollution, such as toxic disposal sites. Public attention in the 1980s encouraged both industry and government to develop an alternative to this command-and-control approach. This article describes the emergence of that alternative-pollution prevention-and its application in Massachusetts through the 1989 Toxics Use Reduction Act. Pollution prevention focuses on the sources of pollution, both metaphorically and physically, more upstream than its predecessors. The success of the Toxics Use Reduction Act in Massachusetts helped create an opportunity where an alternative pollution prevention paradigm could develop. That paradigm, the precautionary principle, is popular among environment activists because it focuses further upstream than pollution prevention by calling attention to the role the social construction of risk plays in decisions regarding the use of hazardous substances. The authors examine the evolution of the precautionary principle through an investigation of three major pathways in its development and expansion. The article concludes with a discussion of the increased potential for protecting public health and the environment afforded by this new perspective.

Community Participation↗

Radiocesium in the Savannah River Site environment.

The Savannah River Site has produced plutonium, tritium, and other special nuclear materials for national defense, other government programs, and some civilian purposes. Radiocesium, a waste product, has been released to the environment during the operation of five reactors, two radio-chemical processing facilities, and a high-level waste storage system. During the period 1955-1989, 130 GBq of 137Cs was released to the atmosphere and 2.2 x 10(4) GBq was released to site streams and ponds. Approximately 65% of the latter remained on the site. The maximum individual effective dose equivalent at the site boundary was estimated to be 3.3 microSv from atmospheric releases and 600 microSv from liquid releases. The 80-km population dose was 1.6 person-Sv.

Air Pollutants, Radioactive↗

Plutonium in the Savannah River Site environment.

The Savannah River Site has produced plutonium, tritium, and other special nuclear materials for national defense, other government programs, and some civilian purposes. Plutonium has been released to the environment during the operation of five reactors, two radiochemical processing facilities, and other supporting facilities. During the period 1954-1989, 140 GBq of plutonium were released to the atmosphere and 23 GBq were released to site streams and ponds. The maximum individual effective dose equivalent at the site boundary was estimated to be 120 microSv from atmospheric releases and 2.4 microSv from liquid releases. The 80-km population dose was 7.1 person-Sv.

Humans↗

Radiostrontium in the Savannah river site environment.

The Savannah River Site has produced plutonium, tritium, and other special nuclear materials for national defense, other government programs, and some civilian purposes. Strontium has been released to the environment during the operation of five reactors, two radiochemical processing facilities, and other supporting facilities. During the period 1954-1996, 110 GBq of 90Sr were released to the atmosphere and 5,400 GBq were released to site streams. The maximum individual effective dose equivalent at the site boundary was estimated to be 72 microSv from atmospheric releases and 25 microSv from liquid releases. The 80-km population dose was 0.3 person-Sv.

Air Pollutants, Radioactive↗

GATA-3: an unexpected regulator of cell lineage determination in skin.

Multipotent skin stem cells give rise to epidermis and its appendages, including the hair follicle. The Lef-1/Tcf family of Wnt-regulated transcription factors plays a major role in specification of the hair shaft, but little is known about how the equally important hair channel, the inner root sheath (IRS), develops in concert to shape and guide the hair. In a microarray screen to search for transcriptional regulators of hair follicle morphogenesis, we identified GATA-3, a key regulator of T-cell lineage determination. Surprisingly, this transcription factor is essential for stem cell lineage determination in skin, where it is expressed at the onset of epidermal stratification and IRS specification in follicles. GATA-3-null/lacZ knock-in embryos can survive up to embryonic day 18.5 (E18.5), when they fail to form the IRS. Skin grafting unveiled additional defects in GATA-3-null hairs and follicles. IRS progenitors failed to differentiate, whereas cortical progenitors differentiated, but produced an aberrant hair structure. Curiously, some GATA-3-null progenitor cells expressed mixed IRS and hair shaft markers. Taken together, these findings place GATA-3 with Lef-1/Wnts at the crossroads of the IRS versus hair shaft cell fate decision in hair follicle morphogenesis. This newfound function for GATA-3 in skin development strengthens the parallels between the differentiation programs governing hair follicle and lymphocyte differentiation.

Animals↗

America's children: economic perspectives and policy options.

American children are worse off than those in the previous generation in several important dimensions of mental, physical, and emotional well-being. During the 1960s cultural changes adversely affected children while their material condition improved substantially. By contrast, material conditions deteriorated in the 1980s, especially among children at the lower end of the income distribution. Public policies to improve the material condition of children require a transfer of resources from households that do not have children to those that do. Government programs such as tax credits and child allowances are more efficient and equitable than employer-mandated programs.

Adult↗