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Mechanism of oligomerisation of cyclase-associated protein from Dictyostelium discoideum in solution.

Cyclase-associated protein (CAP) is a highly conserved modular protein implicated in the regulation of actin filament dynamics and a variety of developmental and morphological processes. The protein exists as a high molecular weight complex in cell extracts and purified protein possesses a high tendency to aggregate, a major obstacle for crystallisation. Using a mutagenesis approach, we show that two structural features underlie the mechanism of oligomerisation in Dictyostelium discoideum CAP. Positively charged clusters on the surface of the N-terminal helix-barrel domain are involved in inter-molecular interactions with the N or C-terminal domains. Abolishing these interactions mainly renders dimers due to a domain swap feature in the extreme C-terminal region of the protein that was previously described. Based on earlier studies with yeast CAP, we also generated constructs with mutations in the extreme N-terminal region of Dictyostelium CAP that did not show significantly altered oligomerisation behaviour. Constructs with mutations in the earlier identified protein-protein interaction interface on the N-terminal domain of CAP could not be expressed as soluble protein. Assessment of the soluble proteins indicates that the mutations did not affect their overall fold. Further studies point to the correlation between stability of full-length CAP with its multimerisation behaviour, where oligomer formation leads to a more stable protein.

Actins↗

Signaling functions of phosphatidic acid.

Phosphatidic acid (PA) has emerged as a new class of lipid mediators involved in diverse cellular functions in plants, animals, and microorganisms. Considerable progress has been made recently on the production, cellular function, and mode of action of PA in the cell. The cellular levels of PA undergo dynamic changes in response to developmental and environmental stimuli. The production of signaling PA is mediated by families of multiple enzymes that regulate the timing, location, amount, and molecular species of PA. A number of PA target proteins have been identified, which include proteins involved in phosphorylation and dephosphorylation of proteins and lipids, as well as in G protein regulation, vesicular trafficking, and metabolism. PA mediates cellular functions through different modes of action, such as membrane tethering, modulation of enzymatic activities, and/or structural effects on cell membranes. The regulatory processes in which PA has been implicated include signaling pathways in cell growth, proliferation, reproduction, and responses to hormones and biotic and abiotic stresses.

Animals↗

Father-child relationships from the preschool years through mid-adolescence.

In this study, we examined variations in fathering and father-child relationships from the children's preschool years through mid-adolescence. One hundred seventy-seven fathers with first-born children ages 4, 8, 12, and 16 years responded to five sets of questionnaires tapping four domains of childrearing: practices, attitudes, parental role involvement, and role satisfaction. A multivariate analysis of variance identified significant variability among the four age groups in fathers' use of acceptance in childrearing practices, role involvement (frequency and task sharing), satisfaction with paternal role performance, and attitudes about the modifiability of child behavior. The results contribute new information about the nature of fathering throughout the childhood years and adolescence and provide additional support for the view of parenting as dynamic and responsive to the developmental level and gender-related characteristics of the child.

Adaptation, Psychological↗

Elements of a single MAP kinase cascade in Saccharomyces cerevisiae mediate two developmental programs in the same cell type: mating and invasive growth.

Diploid Saccharomyces cerevisiae strains starved for nitrogen undergo a developmental transition from a colonial form of growth to a filamentous pseudohyphal form. This dimorphism requires a polar budding pattern and elements of the MAP kinase signal transduction pathway essential for mating pheromone response in haploids. We report here that haploid strains exhibit an invasive growth behavior with many similarities to pseudohyphal development, including filament formation and agar penetration. Haploid filament formation depends on a switch from an axial to a bipolar mode of bud site selection. Filament formation is distinct from agar penetration in both haploids and diploids. We find that the same components of the MAP kinase cascade necessary for diploid pseudohyphal development (STE20, STE11, STE7, and STE12) are also required for both filament formation and agar penetration in haploids. Thus, haploid yeast cells can enter either of two developmental pathways: mating or invasive growth, both of which depend on elements of a single MAP kinase cascade. Our results provide a novel developmental model to study the dynamics of signal transduction, with implications for higher eukaryotes.

Calcium-Calmodulin-Dependent Protein Kinases↗

Comparative and phylogenetic analysis of developmental sequences.

Event pairing has been proposed for the optimization of developmental sequences (event sequences) on a given phylogenetic hypothesis (cladogram) to determine instances of sequence heterochrony. Here, we show that event pairing is faulty, leading to the optimization of impossible hypothetical ancestors, the underestimation of the lengths of the developmental sequences on the tree, and the proposition of synapomorphies that are not supported by the data. When used for phylogenetic analysis, event pairing can even produce cladograms that are inconsistent with the data. These errors are caused by the fact that event pairing treats dependent features as if they were independent. We present a new method for comparative and phylogenetic analysis of developmental sequences that does not exhibit these errors. Our method applies Search-based character optimization and treats the entire developmental sequence as a single character that is then analyzed by using an edit cost function, which specifies the transformation cost between pairs of observed and unobserved character states, and dynamic programming. In other words, the developmental sequence is directly optimized on the tree. We used event pairing as an edit cost function, but others are possible.

Animals↗

Developmental hyperthermic seizures alter adult hippocampal benzodiazepine binding and morphology.

Experimental hyperthermic seizures in 15-day-old rats resulted in both an alteration in the benzodiazepine (BDZ) binding site in the hippocampal region and morphologic changes in hippocampal neurons. These alterations were not apparent until adulthood. Experimental adult animals also showed a reduced anticonvulsant response to a selective BDZ ligand when challenged with pentylenetetrazol. Developmental hyperthermic seizures may initiate dynamic changes in the hippocampus that contribute to adult functional impairment.

Animals↗

Toward an organizational-relational model of open adoption.

Clinicians and social scientists have attempted to demonstrate the advisability of open versus closed adoption (communication and/or contact vs. no communication and/or contact between biological and adoptive parents) from a variety of theoretical perspectives. In our article, we seek a conceptual framework that will (a) elaborate how such divergent conclusions about openness versus confidentiality have heretofore been drawn, and (b) provide a comprehensive analysis of the behavior and experiences of all members of the adoption triad (birthparents, adoptive parents, adoptees). Employing structural aspects of organismic-developmental theory (Werner, 1957) and dynamic aspects of self-in-relation theory (Miller, 1976), we propose an organizational-relational approach to open adoption. Preliminary research findings are also provided.

Adaptation, Psychological↗

The psychotherapy of genetics.

The evolution of genomic science and its effect on medicine and health care offer opportunities for family therapists to participate in the comprehensive care of patients and families with genetic disorders. This article provides an overview of what we now know about the psychological and interpersonal experience of patients and families facing some of these illnesses. Case examples illustrate the process of decision-making about testing and treatment, and the importance of understanding developmental issues and transgenerational family dynamics in any related psychotherapy. Challenging emotional issues include managing anger, ambivalence, and guilt; challenging interpersonal issues include dealing with differing coping and communication styles, decisions about disclosure and secrets, and conflict resolution. Family-oriented interventions include individual, couple, and family therapy, and psychoeducational groups. Recommendations are made for family therapists to participate as part of the genetic healthcare team.

Adolescent↗

Pharmacokinetics and renal function in preterm infants.

There is an increase in the survival rate of preterm infants due to rapid advances in medical knowledge and technology. However, the research and attention paid to the proper use of pharmacotherapy in these infants is still a relatively underdeveloped field. Effective and safe drug therapy requires a thorough understanding of human developmental biology and of the dynamic ontogeny of drug absorption, drug disposition, drug metabolism, and drug excretion. It is apparent that maturation of organ system function and changes in body composition during gestation and during the neonatal period exert a significant effect on the disposition of drugs. This review focuses on the effects of maturational and drug-induced changes in renal function on clinical pharmacokinetics in the preterm infant.

Betamethasone↗

An interactionist perspective on the socioeconomic context of human development.

This article addresses the relationship between socioeconomic status (SES), family processes, and human development. The topic is framed as part of the general issue of health disparities, which involves the oft-observed positive relationship between SES and the cognitive, social, emotional, and physical well-being of adults and children. A review of recent research and theory identifies three general theoretical approaches that provide possible explanations for the association between SES and individual development: the social causation, social selection, and interactionist perspectives. Empirical evidence demonstrates support for the social causation view that SES affects families and the development of children in terms of both family stress processes (the family stress model) and family investments in children (the family investment model). However, there also is empirical support for the social selection argument that individual characteristics lead to differences in SES. Especially important, recent research is consistent with an interactionist approach, which proposes a dynamic relationship between SES and developmental change over time. Drawing on the combined set of research findings, the article concludes with the description of an interactionist model that serves as a heuristic for future studies of the links among SES, parenting behaviors, and child development.

Adolescent↗

Genetic and environmental influences on developing autonomic control of heart rate.

Individual differences in cardiovascular regulation result from a dynamic interaction between genetically programmed developmental processes and extrinsic (environmental) conditions. The alterations in autonomic functioning previously identified among pups of the spontaneously hypertensive rat (SHR) strain suggest a genetic influence on autonomic development. In the present studies, an early stimulation procedure previously shown to reduce the behavioral and endocrine responsiveness of rodents in adulthood was demonstrated to alter both neural control of heart rate and regional brain catecholamine levels during the preweaning period. Pups from litters of SHR and Wistar-Kyoto (WKY) rats were handled daily during the first postnatal week. Selective pharmacological blockade with atenolol and atropine methylnitrate was used to identify autonomic controls of heart rate at 16 and 28 days of age. Combined blockade was used to estimate intrinsic heart rate. In both SHR and WKY, early handling was associated with elevated basal heart rate, elevated intrinsic heart rate, and decreased sympathetic tone. Parasympathetic influence on heart rate was elevated by early handling in WKY and decreased by handling in SHR. In addition, an increase in dorsal cortical norepinephrine concentration was produced by early handling in both strains. These data suggest that early environmental conditions can interact with the genetic predisposition for elevated blood pressure and may play a potentially important role in organizing the neural controls of cardiovascular regulation.

Adrenergic beta-Antagonists↗

Analysis of DNA methylation profiles in preimplantation embryos using bisulfite mutagenesis.

For developmental competence of mammalian embryos, dynamic epigenetic changes to both the maternally and paternally derived contributions to the genome of the zygote should be brought about in the early cleavage stages. DNA methylation is a typical epigenetic mark modified during pre-implantation development. Here, we describe how to analyze DNA methylation profiles in early-stage embryos.

Animals↗

Beyond despair and disengagement: a transactional model of personality development in later life.

It is argued that ego analytic, disengagement, and symbolic interaction theories of personality share an insufficient consideration of the dynamics of the interaction between developmental and social forces transpiring during the aging period. An alternative, transactional model is proposed, positing that the effects of the environment to which the elderly person is subject are the product of: (1) the people and settings comprising that environment and (2) the manner in which the individual acts upon and is acted upon by these people and settings. The model highlights the need for research in which present behavioral and environmental events assume as much importance as past ones.

Adaptation, Psychological↗

Thoracic duct lymph flow: a comparative study in newborn and adult sheep.

To understand better developmental changes in body fluid dynamics, we studied thoracic duct lymph flow in 9 newborn and 5 adult sheep. The experiments were carried out under general anaesthesia following bilateral ligation of the renal vessels and ureters. After a 30 min control period, we administered three successive 5-min intravenous infusions of isotonic saline equivalent to 2% of body weight each, at 30-min intervals. The average basal lymph flow rate was 0.157 +/- 0.033 (SEM) ml.min-1.kg-1 and 0.046 +/- 0.018 ml.min-1.kg-1 in newborns and adults respectively (p less than 0.05). Fluid overloading resulted into similar intravascular retentions at the end of each 30-min period in both groups although the increase in lymph flow was repeatedly more than three times higher in the newborns. The more pronounced lymph flow response in the newborns could not be accounted for only on the basis of a difference in capillary filtration. We speculate that interstitial forces and/or the lymphatic pumping activity play a greater role in facilitating fluid movements in the newborn lamb than in the adult ewe. Overall, the higher capacity of the newborn to eliminate excess interstitial fluid constitutes a significant factor in the body's defense against oedema.

Age Factors↗

Influence of 6-mercaptopurine on the prenatal development of the rat cortex.

The prenatal cortex development after the application of 6-Mercaptopurine (6-MP) was studied in the rat embryo. 24 h after application of a single dose of 6-MP on day 12, 13, 14 or 15 of gestation first cell lesions occured in the form of necroses. 48 h after injection of the drug these necroses were most pronounced. Their extent and distribution pattern was, however, dependent on the developmental stage. In the early developmental phase, on days 12 and 13, massive necroses could be observed in the intermediate zone. At later stages of development (drug application on day 14 or 15) damaged cells could occasionally also be found scattered over the whole ventricular wall. The late toxic response to 6-MP treatment suggests that, after incorporation of metabolites of the agent into DNA during the S-phase, at least one additional S-phase is completed before the disturbance created in a cell is sufficient to cause necrosis. The necrosis may be a result of an action of 6-MP directly on DNA or via an affect on transcription. The different extent of the lesion during the various developmental phases suggests different growth dynamics of the cortex.

Animals↗

Childhood trauma and multiple personality disorder: the case of a 9-year-old girl.

This paper reports the case of a 9-year-old girl, evaluated and diagnosed with multiple personality disorder over a 6 month period. Included is a detailed description of the child's presentation with historical and developmental data. A discussion of the dynamic and predisposing features of the case with references to current literature follows, along with treatment perspectives.

Child↗

Are genetically informed designs genetically informative? Comment on McGue, Elkins, Walden, and Iacono (2005) and quantitative behavioral genetics.

M. McGue, I. Elkins, B. Walden, and W. G. Iacono presented the findings from a twin study examining the relative contributions of genetic and environmental factors to the developmental trajectories of parent-adolescent relationships. From a behavioral genetics perspective, this study is well conceptualized, is well implemented, and raises some interesting developmental questions. Yet, the classic twin methodology and heritability estimates obfuscate the dynamic gene-ecology transactions that underlie these social developmental trajectories. There is a growing divide between the findings of quantitative behavioral genetics, with its foundational estimate of a statistical genetic influence, and developmental molecular genetics. This comment provides a brief overview of this divide and its implications for the findings of McGue et al. as well as quantitative behavioral genetics more broadly.

Adolescent↗

Dynamic aspects of presynaptic calcium currents mediating synaptic transmission.

Ca2+ entry through voltage-gated Ca2+ channels (VGCC) triggers transmitter release. Direct recording of Ca2+ currents from the calyx of Held nerve terminal revealed that presynaptic VGCCs undergo various modulations via presynaptic G protein-coupled receptors (GPCRs), Ca2+-binding proteins and a developmental switch of their alpha1 subunits. Dynamic changes of presynaptic VGCCs alter synaptic efficacy, thereby contributing to a variety of modulations of the CNS function.

Animals↗