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Diversity of novel recombining elements suggests developmentally programmed expression of the T cell receptor alpha/delta locus.

During fetal ontogeny, the first wave of gamma delta T lymphocytes appears in the thymus at day 14 of gestation assembling predominantly T cell receptors (TcR) with V gamma 3 and V delta 1. To identify V delta gene segments that are transcribed at day 16, subsequent to the first wave of V delta 1 expression, delta chain cDNA was amplified by the anchored polymerase chain reaction with single-sided specificity for C delta. Unexpectedly, most of the cDNA clones do not contain V gene segments. In some cDNA clones an alternative splice from the leader exon to the C delta exon has deleted the whole variable region exon. In other cDNA clones, multiple non-V-like elements are juxtaposed to the D delta 2 and J delta 1 gene segments. A large number of these diverse elements appear to be rearranged in fetal thymocytes, bringing V alpha gene segments located upstream of the recombining element into proximity to the J alpha locus. It is proposed that these rearrangements make irreversible the commitment to the TcR alpha beta lineage and determine a programmed read out of different clusters of V alpha gene segments.

Animals

Early establishment and autonomous implementation of a developmental program controlling silkmoth chorion gene expression.

To address the question of whether prechoriogenic follicles of the silkmoth Bombyx mori have the capacity to enter choriogenesis in organ culture and define the stage at which choriogenesis becomes established as a follicle-autonomous program, we have cultured immature ovarioles dissected from developing pupae and examined the protein synthetic profiles of follicular cells of individual follicles at the end of the culture period. The protein synthetic profiles of the cultured follicles were also correlated with corresponding profiles of chorion mRNA accumulation. Our results demonstrate that the last 17 (+/- 2) vitellogenic follicles of Day 5 to 7 pupae are capable of initiating choriogenesis in organ culture. The earliest vitellogenic stage to enter choriogenesis in vitro does so after 34 (+/- 4) hr in culture and follicles entering choriogenesis in vitro are capable of proceeding through all choriogenic stages at a speed comparable to that occurring in vivo. Therefore, once the choriogenic program becomes established in follicular cells, it can be implemented autonomously in the absence of extrafollicular factors. Earlier vitellogenic stages lack this capacity, presumably because they require additional hemolymph factors to establish the choriogenic potential. Our results demonstrate that the choriogenic potential of cultured vitellogenic follicles cannot be influenced by addition of 20-hydroxyecdysone to the culture medium.

Animals

Gene activation is required for developmentally programmed cell death.

The intersegmental muscles of the tobacco hawkmoth Manduca sexta die during the 36-hr period after metamorphosis. The trigger for cell death is a fall in the ecdysteroid titer. Commitment of the intersegmental muscles to degenerate involves selective repression and activation of ecdysteroid-responsive genes. When the pattern of gene expression is altered after injection of either 20-hydroxyecdysone or actinomycin D, the muscles persist. cDNA clones have been isolated for four genes that become abundantly expressed coincident with the commitment to degenerate. The data presented here indicate that programmed cell death is not due to the cessation of macromolecular synthesis in condemned cells but rather is due to the activation of a differentiative pathway.

Aging

Developmental program of murine erythroleukemia cells. Effect of the inhibition of protein synthesis.

The relationship between protein synthesis and commitment to terminal erythroid differentiation by dimethylsulfoxide-treated murine erythroleukemia (MEL) cells has been studied. Treatment with cycloheximide blocks the commitment of MEL cells. The effects of cycloheximide are completely reversible, however. Treatment of MEL cells before commitment delays commitment for a period of time equal to the length of inhibitor treatment. Puromycin exerts a similar effect on the commitment of MEL cells. These results indicate that there is a continuous requirement for protein synthesis before the commitment event.

Animals

Developmentally programmed induction of differentiation inhibiting activity and the control of stem cell populations.

Differentiation inhibiting activity/leukemia inhibitory factor (DIA/LIF) is a glycoprotein that controls differentiation of pluripotential stem cells. Alternative transcription generates both diffusible and matrix-associated forms of DIA/LIF. Transcriptional analysis using a sensitive ribonuclease protection assay revealed that the two messages are expressed independently, consistent with the proposition that the two forms of DIA/LIF have distinct biological roles. DIA/LIF expression was found to be activated early during differentiation of embryonic stem (ES) cells, providing a mechanism for feedback regulation of stem cell renewal. Expression of DIA/LIF by mesenchymal cells was shown to be controlled in a paracrine manner by polypeptide regulatory factors. Specific expression of the two forms of DIA/LIF was also demonstrated in the egg cylinder-stage mouse embryo. The combination of cell type-specific and signal-specific regulation enables very precise control over DIA/LIF expression and may represent an important component of the regulatory networks that govern stem cell proliferation and differentiation during mammalian development.

Animals

Tec2, a second transposon-like element demonstrating developmentally programmed excision in Euplotes crassus.

The analysis of a repetitive DNA interruption of the micronuclear precursor to a 0.85-kb macronuclear gene in the hypotrich Euplotes crassus has led to the identification of a second transposon-like element named Tec2. Two copies of this element, one inserted into the other, compose the interruption. The Tec2 element resembles the previously characterized Tec1 element in overall size, copy number, length, and extreme terminal sequence of its inverted repeats and in the apparent use of a 5'-TA-3' target site. In addition, extrachromosomal circular forms of Tec2 appear in DNA isolated from cells undergoing macronuclear development at the same time and with the same conformation as extrachromosomal circular forms of Tec1. These similarities suggest that the Tec1 and Tec2 elements may be under the same type of regulation during macronuclear development.

Animals

Developmental programming for retinotectal patterns.

Programming events at stages 28-31 in Xenopus specify the cellular positional information that individual retinal ganglion cells will use to derive theri appropriate locus specificity for assembly of the retinotectal map. The 'programme' that emerges in the stage 31 retina affects the entire ganglion cell population (99 percent of which is generated later) and refers positional information to intraretinal axes (AP and DV) and zero-points. Its expression in intact retinae was not modified by repeated reintroduction into pre-stage 28 orbits, prolonged eye culture in vitro, or severe disruption of the timing and sequence of ganglion cell births or of optic fibre arrivals in the tectum. In contrase, intraretinal reorganizations did not produce major modifications (e.g. after transection, partial ablation, fragment fusion etc.) in the set of locus specificities arising in various retinal regions and, in some instances, in the reference axes themselves. The modified programmes were characteristic of the components undergoing reorganization, but were convergent (many sets of reorganizing components gave a few final patterns); they appeared to involve a stable and rapid reprogramming of certain components by others, in a hierarchical fashion. The remaining experiments focus on the problem of localizing the 'trigger' for the transition from the unspecified to the specified state in the retina at stages 28-31. Specification can occur in vitro, based on reversible AP and DV orientational markers which are present in the pre-stage 28 eye primordium; in heterochromically grafted eyes, specification was neither precipitated nor delayed by altering the stage of the host. Finally, chemical dissection of the differentiating eye primordium confirmed the inference (from Jacobson's [3-H] thymidine labelling kinetics) that a specific gangliogenic precursor cell type exists in the stage 28 retinal neuroepithelium, and suggested that differentiative events in these cells trigger the specification process.

Animals

Self-learning packages in staff development.

Potential uses for self-learning packages in the nursing staff development setting include orientation programs, mandatory education programs, developmental programs, and review of infrequently used skills. The staff development educator can use pretest and posttest results obtained from the use of self-learning packages to document intervention with the learner. Benefits for both learners and staff development educators when this teaching strategy is used are described.

Education, Nursing, Continuing

Interdisciplinary early intervention program.

Developmental data were obtained on 40 children with Down's syndrome by an interdisciplinary team during an ongoing early intervention program. Interventive methods are described. Results are compared with available data on children with Down's syndrome who were not in early intervention programs. Comparisons of developmental progress are also made of children begun in the early intervention program before six months of age with those begun after six months of age. Conclusions from the study indicate that early intervention helps the child in earlier attainment of many developmental tasks and enhances functioning of the family unit.

Counseling

Developmental intervention program for high-risk premature infants: effects on development and parent-infant interactions.

Developmental follow-up studies have documented that low birth weight infants are at high risk for mental and physical disabilities, despite recent advances in neonatal intensive care. Moreover, parent-infant bonding is hampered by the barriers created by technical equipment. This study evaluated a program of hospital and home-based developmental interventions designed to enhance the development of high-risk, preterm infants and the quality of communication between infants and their caregivers. Treatment and contrast groups consisted of 41 premature infants weighing less than 1800 g at birth. Treatment took a preventive approach, consisting of daily multimodal interventions in-hospital and twice-monthly interventions by child development specialists in the child's home, through 12 months adjusted age. Infants in the contrast group received traditional, remedially oriented care. The Bayley Scales of Infant Development were used to measure mental and psychomotor development, and the Greenspan-Lieberman Observations System (GLOS) was used to analyze the behavioral characteristics of infant-caregiver interactions. Developmental interventions had positive, significant effects on mental development and on the quality of caregiver-infant interactions. Changes in mental development were not independent of changes in the GLOS.

Cognition

Aging. Programmed change.

Is aging due to random change or to a developmental program? This fundamental question motivates much research in gerontology and focuses clinical geriatrics research in different directions, as well. If aging changes are random, the prevalence and natural history of disease in the elderly might be unpredictable. Alternatively, if a developmental program continues to operate in late life, physiologic changes could predispose to certain disease or influence therapy in predictable ways. This article argues that the physiology of aging does result from a genetic program that continues to operate in late life.

Aging