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Katanin's severing activity favors bundling of cortical microtubules in plants.

Higher plant cells exhibit interphase microtubule arrays specific to plants, which are essential for their developmental program. These cortical microtubules (CMT) consist of a population of highly dynamic microtubules that are usually organized into bundles in the cortex of the cells. The organization of CMT is intimately linked to the acquisition of specialized functions, and subsequentchanges in their distribution affect their properties. The mechanisms underlying the formation and the distribution of CMT are still unclear, and little is known about the proteins that are involved in this phenomenon. Here we investigated the putative role of katanin, the only known plant microtubule-severing protein, in the organization of CMT. We generated transgenic Arabidopsis lines that overexpress katanin under the control of an ethanol-inducible promoter. In response to an induced overexpression of katanin, CMT organized into numerous and thick bundles, which ultimately depolymerized. From the analyses of CMT patterns together with recent data on CMT dynamics, we propose that, in interphase cells, katanin's main activity is to free CMT, generating motile microtubules that incorporate into bundles.

Adenosine Triphosphatases↗

Regulation of intercellular tight junctions by zonula occludens toxin and its eukaryotic analogue zonulin.

The intestinal epithelium represents the largest interface between the external environment and the internal host milieu and constitutes the major barrier through which molecules can either be absorbed or secreted. There is now substantial evidence that tight junctions (tj) play a major role in regulating epithelial permeability by influencing paracellular flow of fluid and solutes. Tj are one of the hallmarks of absorptive and secretory epithelia. Evidence now exists that tj are dynamic rather than static structures and readily adapt to a variety of developmental, physiological, and pathological circumstances. These adaptive mechanisms are still incompletely understood. Activation of PKC either by Zonula occludens toxin (Zot) or by phorbol esters increases paracellular permeability. Alteration of epithelial tj is a recently described property for infectious agents. Clostridium difficile toxin A and B and influenza and vesicular stomatitis viruses have been shown to loosen tj in tissue culture monolayers. Unlike what occurs after the Zot stimulus, these changes appear to be irreversible and are associated with destruction of the tj complex. On the basis of this observation, we postulated that Zot may mimic the effect of a functionally and immunologically related endogenous modulator of epithelial tj. We were able to identify an intestinal Zot analogue, which we named zonulin. It is conceivable that the zonulins participate in the physiological regulation of intercellular tj not only in the small intestine, but also throughout a wide range of extraintestinal epithelia as well as the ubiquitous vascular endothelium, including the blood-brain barrier. Disregulation of this hypothetical zonulin model may contribute to disease states that involve disordered intercellular communication, including developmental and intestinal disorders, tissue inflammation, malignant transformation, and metastasis.

Cholera Toxin↗

Dynamic changes in inhibin messenger RNAs in rat ovarian follicles during the reproductive cycle.

The alterations in morphology and function of the ovarian follicle as it matures, ovulates, and becomes a corpus luteum are dramatic. A variety of steroid and polypeptide hormones influence these processes, and the ovary in turn produces specific hormonal signals for endocrine regulation. One such signal is inhibin, a heterodimeric protein that suppresses the secretion of follicle-stimulating hormone from pituitary gonadotrophs. Rat inhibin complementary DNA probes have been used to examine the levels and distribution of inhibin alpha-and beta A-subunit messenger RNAs in the ovaries of cycling animals. Striking, dynamic changes have been found in inhibin messenger RNA accumulation during the developmental maturation of the ovarian follicle.

Animals↗

A multidisciplinary selection model for youth soccer: the Ghent Youth Soccer Project.

OBJECTIVES: To determine the relationships between physical and performance characteristics and level of skill in youth soccer players aged 12-16 years. METHODS: Anthropometry, maturity status, functional and sport-specific parameters were assessed in elite, sub-elite, and non-elite youth players in four age groups: U13 (n = 117), U14 (n = 136), U15 (n = 138) and U16 (n = 99). RESULTS: Multivariate analyses of covariance by age group with maturity status as the covariate showed that elite players scored better than the non-elite players on strength, flexibility, speed, aerobic endurance, anaerobic capacity and several technical skills (p<0.05). Stepwise discriminant analyses showed that running speed and technical skills were the most important characteristics in U13 and U14 players, while cardiorespiratory endurance was more important in U15 and U16 players. The results suggest that discriminating characteristics change with competitive age levels. CONCLUSIONS: Characteristics that discriminate youth soccer players vary by age group. Talent identification models should thus be dynamic and provide opportunities for changing parameters in a long-term developmental context.

Adolescent↗

STRUCTURE AND BIOGENESIS OF THE CELL WALLS OF GRASSES.

The chemical structures of the primary cell walls of the grasses and their progenitors differ from those of all other flowering plant species. They vary in the complex glycans that interlace and cross-link the cellulose microfibrils to form a strong framework, in the nature of the gel matrix surrounding this framework, and in the types of aromatic substances and structural proteins that covalently cross-link the primary and secondary walls and lock cells into shape. This review focuses on the chemistry of the unique polysaccharides, aromatic substances, and proteins of the grasses and how these structural elements are synthesized and assembled into dynamic and functional cell walls. Despite wide differences in wall composition, the developmental physiology of grasses is similar to that of all flowering plants. Grass cells respond similarly to environmental cues and growth regulators, exhibit the same alterations in physical properties of the wall to allow cell growth, and possess similar patterns of wall biogenesis during the development of specific cell and tissue types. Possible unifying mechanisms of growth are suggested to explain how grasses perform the same wall functions as other plants but with different constituents and architecture.

Journal Article↗

Coming alive: the psychotherapeutic treatment of patients with eating disorders.

OBJECTIVE: To describe a dynamic psychotherapeutic approach specifically developed for women with eating disorders. METHOD: The developmental origins and psychological disturbances associated with eating disorders are outlined based on a review of the literature and the authors' observations. Principles from contemporary psychodynamic theories that focus on subjectivity and intersubjectivity are applied to the treatment of women with eating disorders and are illustrated with clinical vignettes. Theoretical models employed include intersubjective and relational theory, self psychology, and feminist psychodynamic theory. RESULTS: Relative unresponsiveness to a child's subjective experience and to child-initiated cues are thought to contribute to psychological disturbances among women with eating disorders. These disturbances include impairment in the sense of effectiveness, in the capacity to appreciate and tolerate emotions, and in the continuity and cohesiveness of self-experience. Self-imposed starvation, binge-purge episodes, and excessive exercise may act as psychic organizers in women with these vulnerabilities. An active psychotherapeutic approach with sustained interest in the patient's authentic subjective experience promotes the identification, organization, and integration of emotional experience and the consolidation of a more differentiated sense of self. CONCLUSION: In the psychotherapeutic treatment of women with eating disorders, a therapeutic posture of sustained empathic enquiry contributes to the patient's curiosity about her own subjective world. Feeling understood in a therapeutic relationship and feeling assisted in organizing and understanding one's subjective experience contributes to the gradual unfolding of the psychological sense of self.

Adult↗

Postmodern social work in interdisciplinary contexts: making space on both sides of the table.

This paper describes a university-based, maternal child health, interdisciplinary training project designed to assist health professionals in working with neurodevelopmentally at-risk children and their families. It discusses a role for social work educators and practitioners that brings to the table varied, conceptual questions that are intertwined with more traditional social work intervention in a postmodern approach to interdisciplinary teaming. A case example illustrates the integration of these two approaches and the inquiries that social work can initiate to facilitate "making space" both between the team and family and between members of the team in a dynamic, postmodern, interdisciplinary context.

Adult↗

Developmental switch in synaptic mechanisms of hippocampal metabotropic glutamate receptor-dependent long-term depression.

The presynaptic and postsynaptic properties of synapses change over the course of postnatal development. Therefore, synaptic plasticity mechanisms would be expected to adapt to these changes to facilitate alterations of synaptic strength throughout ontogeny. Here, we identified developmental changes in long-term depression (LTD) mediated by group 1 metabotropic glutamate receptors (mGluRs) and dendritic protein synthesis in hippocampal CA1 slices (mGluR-LTD). In slices prepared from adolescent rats [postnatal day 21 (P21) to P35], mGluR activation induces LTD and a long-term decrease in AMPA receptor (AMPAR) surface expression, both of which require protein synthesis. In neonatal animals (P8-P15), mGluR-LTD is independent of protein synthesis and is not associated with changes in the surface expression of AMPARs. Instead, mGluR-LTD at neonatal synapses results in large decreases in presynaptic function, measured by changes in paired-pulse facilitation and the rate of blockade by the use-dependent NMDA receptor blocker (+)-5-methyl-10,11-dihydro-5H-dibenzo[a,d]cyclohepten-5,10-imine maleate. Conversely, mGluR-LTD at mature synapses results in little or no change in presynaptic function, suggesting a postsynaptic mechanism of expression. The developmental switch in the synaptic mechanisms of LTD would differentially affect synapse dynamics and perhaps information processing over the course of postnatal development.

Age Factors↗

[Effects of family or school disconnection on adolescents' health].

This article presents research on the health of adolescents who are in situations of either family or school detachment. Fourteen health indicators were used to investigate the physical, social and psychological well-being of adolescents. In addition, two separate scales were constructed to take into account family and school disengagement. As anticipated, the results prove that detachment from either family or school has a negative impact on health and this effect is amplified in cases of double detachment--both from family and school. The results also suggest an effect of contextual resilience since the school can play a protective role in for the health of adolescents who are in a situation of family disaffiliation. This research emphasises the need to analyse the risk and protective factors within a developmental and ecological theoretical framework to allow for the consideration of the dynamics involved between the different areas of life which are significant for an individual at a given moment in his development.

Adaptation, Psychological↗

[Epidemiology of type 1 diabetes mellitus in Bydgoszcz region in the years 1997-2002].

INTRODUCTION: Type 1 diabetes mellitus belongs to the diseases most often appearing in the developmental age. The incidence of this disease is characterized by the constant dynamic increase. AIM: The purpose of this work was to estimate the value and the dynamics of the incidence of type 1 diabetes mellitus in children from Bydgoszcz region and its analysis according to sex, age, place of residence and season of diabetes diagnosis. MATERIAL AND METHODS: In the period from 1997 to 2002 type 1 diabetes mellitus was recognized in 161 children (80 boys and 81 girls) up to the 14th age of life in separate age groups: 0-4 years: 20; 5-9 years: 68; 10-14 years: 73. The incidence was estimated with the help of an index which was the number of new-recognized type 1 diabetes mellitus cases during one year in the population of 100 000. The number of population was taken from Demographic Yearbook of Provincial Office. RESULTS: The average annual index of the incidence for the six-year period being analyzed was 13.55, it balanced in the following years from 9.44 (1997) up to 15.28 (2002). The highest index of incidence (16.34) was noted in 2000 year. The increase in number of falling ill was observed in groups: 5-9 years old and 10-14 years old. Rarely the diabetes was recognized in the youngest children. The diabetes was almost twice more often recognized in children living in towns (16.30) in comparison with those living in the country (8.84). Revelation of the diabetes takes place mainly in the autumn and winter months. The least number of falling ill was noted in June. The seasonal incidence was observed mainly in children over 5 years. CONCLUSIONS: 1. The index of the type 1 diabetes mellitus incidence among 0-14 year old children was 13.55. 2. During the years 1997-2002 this index increased from 9.44 to 15.28. 3. The diabetes was almost twice more often recognized in children living in towns. 4. The number of becoming ill depends on the season of the year.

Adolescent↗

Regulatory controls for osteoblast growth and differentiation: role of Runx/Cbfa/AML factors.

Formation of skeletal elements during embryogenesis and the dynamic remodeling of bone in the adult involve an exquisite interplay of developmental cues, signaling proteins, transcription factors, and their coregulatory proteins that support differentiation of osteogenic lineage cells from the initial mesenchymal progenitor cell to the mature osteocyte in mineralized connective tissue. As regulatory factors continue to be identified, the complexity of the molecular mechanisms that control gene expression in osteoblast lineage cells and drive the osteoblast maturation process are being further appreciated. A central regulator of bone formation is the Runx2 (Cbfa1/AML3) transcription factor which fulfills its role as a master regulatory switch through unique properties for mediating the temporal activation and/or repression of cell growth and phenotypic genes as osteoblasts progress through stages of differentiation. This review examines the multifunctional roles of Runx2 during osteogenesis. Runx2 functions as a "platform protein" that interacts with a spectrum of coregulatory proteins to provide a combinatorial mechanism for integrating cell signaling pathways required for osteoblast differentiation and the tissue-specific regulation of gene expression. In a broader context, it has recently been appreciated that the Runx1 hematopoietic factor and the Runx3 gene associated with neural and gut development are also expressed in the skeleton, although at present our knowledge of their roles in bone formation is limited. Here we discuss the biological functions of Runx factors in promoting cell fate determination and lineage progression, which include (1) regulating gene activation and repression through coregulatory protein interactions and by supporting chromatin remodeling; (2) integrating ECM signaling and cues from developmental, hormonal, and signal transduction pathways by formation of complexes organized in subnuclear domains; and (3) mediating cell growth control. Last, a comprehensive understanding of Runx functions in the skeleton must consider the regulatory mechanisms that control Runx2 transcription and its functional activity through posttranslational modifications.

Cell Differentiation↗

[Morphology and development of bovine testicular vein (V. testicularis) during the prenatal and neonatal periods].

Investigation into the morphology and development of the testicular vein in bovine was carried out with 85 male foetuses from the 8-40th week of pregnancy and with 10 newborns aged 1 to 10 days of life, the total being 95 preparations. The age of the foetuses was determined by Kantorova method complemented with those by other authors. The observations were made with using rubber latex introduced into the lumen of the tested veins by means of an automatic device of our own construction. It was found out that the developmental transformations of the testicular veins, initiated in the embryo, progress very dynamically in foetuses up to about the 20th week of pregnancy and them gradually slow down in older foetuses. Finally, in a fully formed testicular vein of the oldest foetuses and newborns there can be distinguished the proximal and distal part of this vessel. The proximal part carries the blood away from labile components of the testicular vein, the only exceptions being the aortic branch and the ureteral vein. Now, the solid components escape into the distal part of testicular vein. In the course of the distal part of the vessel there are its three basic plexuses, i.e. the testicular plexus, the marginal plexus of testicular vein and the largest of them--the pampiniform plexus of testicular vein. The blood from the last plexus is carried away into the main trunk of testicular vein by two anastomotic branches--lateral and medial. Of the veins examined the right one usually escapes to the caudal vena cava or to the deep circumflex iliac vein, while the left one to deep circumflex iliac vein or to the common iliac vein.

Animals↗

Sibling jealousy: the family with a new baby.

The family physician who understands the dynamics of sibling jealousy can help parents recognize behaviors that express this developmental stage. Several strategies are available to prepare the older child for the rewarding and maturing experience of a new baby in the family. These techniques apply to the prenatal period, the time of delivery, the homecoming and the period of growing up together.

Child↗

Children and adolescents with diabetes.

IDDM in children and adolescents requires that complex daily management skills be learned by children and their families. Insulin administration, nutrition therapy, and daily monitoring place the burden of self-management on parents and children, who already may be stressed. The unrelenting care required to observe and treat young children produces anxiety in parents whose children are potentially poised between hypoglycemia and DKA. Health care professionals must understand the dynamic nature of childhood diabetes and not underestimate the impact on specific developmental levels or the amount of support and education required.

Acute Disease↗

The dynamics and regulation of mesenchymal cell fusion in the sea urchin embryo.

Cell-cell fusion occurs in a wide variety of developmental contexts, yet the mechanisms involved are just beginning to be elucidated. In the sea urchin embryo, primary mesenchyme cells (PMCs) fuse to form syncytial filopodial cables within which skeletal spicules are deposited. Taking advantage of the optical transparency and ease of micromanipulation of sea urchin embryos, we have developed methods for directly observing the dynamics of PMC fusion in vivo. A fraction of the PMCs was labeled with fluorescent dextran and transfer of the dye to unlabeled PMCs was followed by time-lapse, fluorescence microscopy. Fusion was first detected about 2 h after PMCs began to migrate within the blastocoel. Fusion proceeded in parallel with the assembly of the PMC ring pattern and was complete by the early gastrula stage. The formation of a single, extensive PMC syncytium was confirmed by DiI labeling of fixed embryos. When single micromeres were isolated and cultured in unsupplemented seawater, they divided and their progeny underwent fusion. This shows that the capacity to fuse is autonomously programmed in the micromere-PMC lineage by the 16-cell stage. PMC transplantations at late embryonic stages revealed that these cells remain fusion-competent long after their fusion is complete. At late stages, other mesenchyme cells (blastocoelar cells) are also present within the blastocoel and are migrating and fusing with one another. Fusion-competent blastocoelar cells and PMCs come into contact but do not fuse with one another, indicating that these two cell types fuse by distinct mechanisms. When secondary mesenchyme cells convert to a skeletogenic fate they alter their fusogenic properties and join the PMC syncytium, as shown by transfer of fluorescent dextran. Our analysis has provided a detailed picture of the cellular basis and regulation of mesodermal cell fusion and has important implications regarding molecular mechanisms that underlie fusion.

Animals↗

Neuromotor development from 5 to 18 years. Part 2: associated movements.

Associated movements (AMs) are the most frequently assessed parameters of movement quality in children with motor dysfunctions. In this article, reference curves of duration and degree of AMs from 5 to 18 years are provided. In a cross-sectional study of non-disabled children (n=662) duration and degree of AMs were estimated at six specific ages while children performed repetitive finger, hand, and foot movements, alternating hand and foot movements, diadochokinesis, sequential finger movements, pegboard, stress gaits, and dynamic balance. Moderate-to-high intraobserver and interobserver reliability for the assessment of AMs were noted. Duration and degree of AMs displayed a non-linear developmental course that was a function of the motor task's complexity. AMs decreased most with age in repetitive movements, less in alternating and sequential movements, and least in the pegboard and dynamic balance. Reference curves demonstrated large interindividual variations for duration and degree of AMs. Both the variable developmental course and large interindividual variation need to be taken into account in the assessment of movement quality of school-age children. In contrast to timed performance, considerable sex differences for AMs were observed.

Adolescent↗

Identification of novel pathway regulation during myogenic differentiation.

Stem cell differentiation is governed by extracellular signals that activate intracellular networks (or pathways) to drive phenotypic specification. Using a novel gene clustering strategy we determined pathway relationships from a genome-wide transcriptional dataset of skeletal myoblast differentiation. Established myogenic pathways, including cell contractility and cell-cycle arrest, were predicted with extreme statistical significance (p approximately 0). In addition, gene sets associated with angiogenesis, neuronal activity, and mRNA splicing were regulated, exposing developmental and therapeutic implications. Acquisition of transcriptional data spanning the entire differentiation time course provided context for a dynamic landscape of functional pathway regulation. This novel perspective on myogenic cell differentiation revealed previously unrecognized patterns of regulation. We predict that similar analyses will facilitate ongoing efforts to define molecular mechanisms in other stem cell and developmental paradigms. Finally, by combining an iterative process of analysis with supplementation of novel pathways, this application may evolve into a powerful discovery tool.

Animals↗

[Parasite-host relations in toxascariasis in Arctic foxes].

The effect of host infection doze (10, 100, 1000 eggs) and developmental stages of helminths (larvae, adult nematodes) on the relationships in the system "Toxascaris leonina-Alopex lagopus" was studied experimentally. It has been established that 100 eggs are the threshold dose for helminths and 1000 eggs for the host. More distinct changes in the indices are characteristic of the parasite. Dynamics of host-parasite relationships in the development of the parasitic process correspond to helminth developmental stage. Larvae of T. leonina are most pathogenic for the host.

Animals↗