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The roles of cell migration and myofiber intercalation in patterning formation of the postmitotic myotome.

We have previously found that the postmitotic myotome is formed by two successive waves of myoblasts. A first wave of pioneer cells is generated from the dorsomedial region of epithelial somites. A second wave originates from all four edges of the dermomyotome but cells enter the myotome only from the rostral and caudal lips. We provide new evidence for the existence of these distinctive waves. We show for the first time that when the somite dissociates, pioneer myotomal progenitors migrate as mesenchymal cells from the medial side towards the rostral edge of the segment. Subsequently, they generate myofibers that elongate caudally. Pioneer myofiber differentiation then progresses in a medial-to-lateral direction with fibers reaching the lateralmost region of each segment. At later stages, pioneers participate in the formation of multinucleated fibers during secondary myogenesis by fusing with younger cells. We also demonstrate that subsequent to primary myotome formation by pioneers, growth occurs by uniform cell addition along the dorsoventral myotome. At this stage, the contributing cells arise from multiple sources as the myotome keeps growing even in the absence of the dorsomedial lip. Moreover, as opposed to suggestions that myotome growth is driven primarily and directly by the medial and lateral edges, we demonstrate that there is no direct fiber generation from the dorsomedial lip. Instead, we find that added fibers elongate from the extreme edges. Altogether, the integration between both myogenic waves results in an even pattern of dorsoventral growth of the myotome which is accounted for by progressive cell intercalation of second wave cells between preexisting pioneer fibers.

Animals↗

Migration, race and ethnicity, 1960-1980.

"This article compares racial and ethnic patterns in interstate and interregional migration in the years 1960 to 1980.... This research looks at geographical assimilation--the extent to which patterns of migration and regional distribution of minority groups resemble those of whites. Attention is directed to United States-born Asian Americans, blacks, Hispanics, Native Americans and whites, and attempts to answer the following questions: 1) To what extent do the patterns of interstate migration of these groups resemble one another? 2) To what extent do the regional distributions and patterns of net regional migration of these groups resemble one another?" This is a revised version of a paper originally presented at the 1988 Annual Meeting of the Population Association of America (see Population Index, Vol. 54, No. 3, Fall 1988, p. 495).

Black or African American↗

Organ culture of adult mouse intestine. II. Mitotic activity, DNA synthesis and cellular migration after 24 and 48 hours of culture.

DNA synthesis, mitotic activity and cell migration have been measured in organ culture of adult mouse jejunum during the first 48 hr. Explants cultured in DMEM-HEPES-NCTC-135 medium present a sharp decrease of mitotic activity in the first hours of culture, but mitoses are restored to 80% of the controls between 24 and 48 hr. DNA synthesis follows the same pattern. Cell migration continues during culture.

Animals↗

Disruption of neuronal migration by RNAi of Dyx1c1 results in neocortical and hippocampal malformations.

The brains of individuals with developmental dyslexia have neocortical neuronal migration abnormalities including molecular layer heterotopias, laminar dysplasias, and periventricular nodular heterotopias (PNH). RNA interference (RNAi) of Dyx1c1, a candidate dyslexia susceptibility gene, disrupts neuronal migration in developing embryonic neocortex. Using in utero electroporation, we cotransfected cells in the rat neocortical ventricular zone (VZ) at E14/15 with short hairpin RNA vectors targeting Dyx1c1 along with either plasmids encoding enhanced green fluorescent protein or plasmids encoding monomeric red fluorescent protein only. RNAi of Dyx1c1 resulted in pockets of unmigrated neurons resembling PNH. The pattern of migration of transfected neurons was bimodal, with approximately 20% of the neurons migrating a short distance from the VZ and another 40% that migrated past their expected lamina. Approximately 25% of the transfected brains had hippocampal pyramidal cell migration anomalies. Molecular layer ectopias, which were not related to injection site artifacts, were also seen in 25% of the animals. These results support the hypothesis that targeted disruption of the candidate dyslexia susceptibility gene, Dyx1c1, results in neuronal migration disorders similar to those seen in the brains of dyslexics.

Animals↗

The roles of two C. elegans HOX co-factor orthologs in cell migration and vulva development.

Anteroposterior cell migration and patterning in C. elegans are governed by multiple, interacting signaling pathways and transcription factors. In this study, we have investigated the role of ceh-20, the C. elegans ortholog of the HOX co-factor Extradenticle (Exd/Pbx), and unc-62, the C. elegans ortholog of Homothorax (Hth/Meis/Prep), in two processes that are regulated by Hox gene lin-39: cell migration and vulva formation. As in lin-39 mutants, the anterior migrations of neuroblasts in the Q lineage are truncated in Hox co-factor mutants. Surprisingly, though, our findings suggested that the roles of ceh-20 and unc-62 are different from that of lin-39; specifically, ceh-20 and unc-62 but not lin-39 are required for the transmembrane protein MIG-13 to promote anterior migration. To our knowledge, ceh-20 and unc-62 are the only genes that have been implicated in the mig-13 pathway. We find that ceh-20 and unc-62 are also required for several steps in vulva development. Surprisingly, ceh-20 and unc-62 mutants have phenotypes that are starkly different from those of lin-39 mutants. Thus, in this process, too, ceh-20 and unc-62 are likely to have functions that are independent of lin-39.

Animals↗

Mortality due to all causes and to cardiovascular diseases among seven race-ethnic populations in Los Angeles County, 1980.

Mortality rates during 1980 in Los Angeles County are presented for Whites, Blacks, Hispanics, and Americans of Japanese, Chinese, Philippine, and Korean descent, seven groups with varying patterns of migration during the prior decade. For all causes of death, age- and sex-adjusted rates were highest among Blacks, intermediate among Whites and Hispanics, and substantially lower among Asians and Pacific Islanders. A similar observation was made for the major cardiovascular diseases and for diseases of the heart. In contrast, the mortality rates for cerebrovascular diseases exhibited a slightly different pattern, with Blacks again highest, Whites and Japanese being intermediate, and Hispanics, Filipinos, Chinese, and Koreans being lowest. The descriptive information suggests several areas for further research into the effect of various cultural or lifestyle patterns on the occurrence of cardiovascular disease.

Adult↗

Tangential migration of neurons in the developing cerebral cortex.

The mammalian cerebral cortex is divided into functionally distinct areas. Although radial patterns of neuronal migration have been thought to be essential for patterning these areas, direct observation of migrating cells in cortical brain slices has revealed that cells follow both radial and nonradial pathways as they travel from their sites of origin in the ventricular zone out to their destinations in the cortical plate (O'Rourke, N.A., Dailey, M.E., Smith, S.J. and McConnell, S.K. (1992) Science 258, 299-302). These findings suggested that neurons may not be confined to radial migratory pathways in vivo. Here, we have examined the patterns of neuronal migration in the intact cortex. Analysis of the orientations of [3H]thymidine-labeled migrating cells suggests that nonradial migration is equally common in brain slices and the intact cortex and that it increases during neurogenesis. Additionally, cells appear to follow nonradial trajectories at all levels of the developing cerebral wall, suggesting that tangential migration may be more prevalent than previously suspected from the imaging studies. Immunostaining with neuron-specific antibodies revealed that many tangentially migrating cells are young neurons. These results suggest that tangential migration in the intact cortex plays a pivotal role in the tangential dispersion of clonally related cells revealed by retroviral lineage studies (Walsh, C. and Cepko, C. L. (1992) Science 255, 434-440). Finally, we examined possible substrata for nonradial migration in dorsal cortical regions where the majority of glia extend radially. Using confocal and electron microscopy, we found that nonradially oriented cells run perpendicular to glial processes and make glancing contacts with them along their leading processes. Thus, if nonradial cells utilize glia as a migratory substratum they must glide across one glial fiber to another. Examination of the relationships between migratory cells and axons revealed axonal contacts with both radial and nonradial cells. These results suggest that nonradial cells use strategies and substrata for migration that differ from those employed by radial cells.

Animals↗

Segregation of cell lineage in the neural crest.

Following neurulation, neural crest cells emerge from the neural tube and undergo extensive migrations. At the onset of migration, multipotent stem cells exist within the neural crest population. Eventually, these assume one of a number of possible fates, ranging from neurons and glia of the peripheral nervous system to pigment cells and cells of the facial skeleton. Neural crest cells follow migratory pathways and differentiate into derivatives that often are characteristic of their axial level of origin. Based on their stereotyped patterns of migration, limited intermixing and distinct homeobox-gene codes, some populations of neural crest cells may have a rostrocaudal regional identity imprinted prior to their emigration.

Animals↗

Understanding the 1996 census migration data.

"The Australian Census provides two approaches to measuring migration: indicators which distinguish movers from non-movers, and a geographic classification which identifies each person's usual residence on census night, and their usual address one year and five years previously. Although these data represent a rich source of information, they contain several traps for the unwary. We show that differences in the variables and classifications used can result in marked variations in the apparent intensity and patterns of migration. The questionnaire and processing methodology used in the 1996 Census also resulted in a number of inconsistencies between the migration indicators and the usual address information. We examine the magnitude and source of these anomalies, assess their implications and propose a partial solution."

Australia↗

Quasi-dynamic test of in vitro cell migration developed to characterize dividing cells of spontaneously metastasizing rat sarcomas.

A "Quasi-dynamic Test of in vitro Cell Migration" (QTCM) was developed in which the quantitative estimation of migration of dividing cells is based on a comparative evaluation of their dispersion in single-cell-derived colonies after 72 h of clonal growth under standard and test conditions. Expert visual evaluation of microscopic images of cell colonies including estimation of dispersion of cells in the colonies is checked and made more precise by computerized evaluation of digitized outlines of cells in the colonies. Using QTCM, distinctions in the pattern of migration between three neoplastic cell populations differing by their origin and degree of malignancy were found. Although transfer of cells into slightly acid conditions did not always increase the mean value of cell dispersion in the colonies, each cell population was found to include a cell fraction that did manifest considerably greater migration and this fraction was markedly larger in the more malignant cell populations. The results of both types of evaluation, visual and computerized, were in mutual accord, with accuracy being greater on the computer side. Thus, the QTCM proved useful for qualified estimation and/or computer measurement of in vitro migration of dividing cells on a population level.

Analog-Digital Conversion↗

Metropolitan growth and population development at the national level.

The importance of treating urban populations as heterogeneous when making national population forecasts is the main theme of this paper. "It hypothesizes that large metropolitan areas exhibit specific patterns of migration, age composition, and fertility when compared with urban areas as a whole. In particular, such areas are characterized by relatively low levels of reproduction." The impact of the urbanization process on demographic change at the national level is emphasized. The authors examine the demographic structure of large metropolitan areas in highly urbanized countries and present comparisons with the structure of the total urban population. They then focus on the case of a developing country, the Republic of Korea, for which alternative patterns of urban development are considered. Issues concerning policies of urbanization and population redistribution are also discussed. Comments by T. R. Lakshmanan (pp. 39-41) and Ahmed Seifelnasr (pp. 42-3) are also included.

Age Distribution↗

Interaction of malignant MO4 cells with chick hypoblast in culture.

Malignant MO4 mouse fibrosarcoma cells were confronted with fragments of hypoblast from stage 4 (Vakaet 1970) blastoderms in different dispositions either permitting or preventing contact of the hypoblast with the tissue culture plastic. Explantation of an MO4 cell aggregate on top of 24 h-old-hypoblast caused retraction of the hypoblast. Contact inhibition of ruffling in hypoblast cells at the inner margin, by MO4 cells migrating radially from the aggregate, prevented closure of the hole brought about by the initial retraction. Disintegration of hypoblast was not observed. Migration of MO4 cells during the first 24 h was faster from an aggregate explanted on top of hypoblast than from an aggregate explanted on tissue culture plastic. Hypoblast fragments explanted on top of confluent layers of MO4 cells attached and spread during the first 12 h. Later, the hypoblast progressively disintegrated. Here, MO4 cells accumulated underneath the hypoblast. We concluded 1) that the hypoblast attracted the MO4 cells by influencing their pattern of migration and 2) that contact with the artificial substrate allowed survival of hypoblast confronting malignant MO4 cells. Ultrastructural analysis suggested that formation of extracellular material played a major role in the interaction between the normal tissue and the malignant cells.

Animals↗

Comparison of two strains of Schistosoma mansoni with respect to the sites and kinetics of immune elimination in irradiated cercaria-immunized mice.

A comparison was made of the sites of elimination of NMRI and Mill Hill strains of Schistosoma mansoni in C57BL/6J mice previously immunized with 50 krad gamma-irradiated cercariae of the homologous strain. In the first experiment, the fate of percutaneous challenge infections with 75Se-labeled cercariae was evaluated by autoradiography of tissue squashes and hepatic portal perfusion. For both strains of parasite, migration from skin to lungs was delayed but not reduced in immunized mice relative to controls, with immune elimination taking place at some point after migration to the lungs. In a second experiment, resistance to the Mill Hill strain of S. mansoni was compared in mice challenged by percutaneous infection with cercariae and by intravenous injection with lung schistosomula. Both types of challenge were shown to be vulnerable to immune elimination. We conclude that under the conditions employed in this study, there is no significant difference between the NMRI and Mill Hill strains of S. mansoni in the patterns of migration and elimination, with most or all elimination in both control and immunized mice taking place after migration from the skin.

Animals↗

Spalt modifies EGFR-mediated induction of chordotonal precursors in the embryonic PNS of Drosophila promoting the development of oenocytes.

Genes of the spalt family encode nuclear zinc finger proteins. In Drosophila melanogaster, they are necessary for the establishment of head/trunk identity, correct tracheal migration and patterning of the wing imaginal disc. Spalt proteins display a predominant pattern of expression in the nervous system, not only in Drosophila but also in species of fish, mouse, frog and human, suggesting an evolutionarily conserved role for these proteins in nervous system development. Here we show that Spalt works as a cell fate switch between two EGFR-induced cell types, the oenocytes and the precursors of the pentascolopodial organ in the embryonic peripheral nervous system. We show that removal of spalt increases the number of scolopodia, as a result of extra secondary recruitment of precursor cells at the expense of the oenocytes. In addition, the absence of spalt causes defects in the normal migration of the pentascolopodial organ. The dual function of spalt in the development of this organ, recruitment of precursors and migration, is reminiscent of its role in tracheal formation and of the role of a spalt homologue, sem-4, in the Caenorhabditis elegans nervous system.

Animals↗

Dlx2 progenitor migration in wild type and Nkx2.1 mutant telencephalon.

The transcription factor Dlx2 is expressed widely throughout the ventral telencephalon. We have examined the in vitro and in vivo migration of Dlx2 progenitors originating from the different ganglionic eminences of both wild type and Nkx2.1 mutant animals. By examining the expression of tauLacZ targeted into the Dlx2 locus we were able to visualize the distribution of cells expressing this gene at both embryonic and postnatal stages. This analysis suggested that Dlx2-expressing cells traverse a number of characteristic migratory routes to populate both cortical and subcortical regions. We also examined how these patterns of migration were affected in Nkx2.1 mutant animals. In these mutants, the early but not late populations of Dlx2-expressing cells originating in the ventral telencephalon that migrate to the cortex are lost. This recovery may be, at least in part, a result of the late migration of Dlx2 progenitors from the caudal ganglionic eminences (CGE), which, based on our previous work, does not appear to require Nkx2.1 gene function.

Animals↗

Versican is selectively expressed in embryonic tissues that act as barriers to neural crest cell migration and axon outgrowth.

Chondroitin sulfate proteoglycans have been implicated in the regulation of cell migration and pattern formation in the developing peripheral nervous system. To identify whether the large aggregating proteoglycan versican might be mediating these processes, we prepared monospecific antibodies against a recombinant core protein fragment of chick versican. The purified antibodies recognize the predominant versican splice-variants V0 and V1. Using these antibodies, we revealed a close correlation between the spacio-temporal expression of versican and the formation of molecular boundaries flanking or transiently blocking the migration pathways of neural crest cells or motor and sensory axons. Versican is present in the caudal sclerotome, the early dorsolateral tissue underneath the ectoderm, the pelvic girdle precursor and to a certain extent in the perinotochordal mesenchyme. Versican is completely absent from tissues invaded by neural crest cells and extending axons. Upon completion of neural crest cell migration and axon outgrowth, versican expression is shifted to pre-chondrogenic areas. Since versican inhibits cellular interactions with fibronectin, laminin and collagen I in vitro, the selective expression of versican within barrier tissues may be linked to a functional role of versican in the guidance of migratory neural crest cells and outgrowing axons.

Animals↗

Synthesis and secretion of phosphatases by endophytic isolates of Colletotrichum musae grown under conditions of nutritional starvation.

Even though fungal phosphatases are widely used to study ambient-regulated gene expression, little is known about these enzymes in the agriculturally important genus Colletotrichum. We have therefore identified several phosphatase activities in endophytic isolates of Colletotrichum musae grown under conditions of nutritional sufficiency or starvation for sources of phosphorus (P), nitrogen (N), carbon (C), and sulphur (S). These enzyme forms could be distinguished by substrate specificity, optimum pH, activation and inhibition by some substances, response to nutritional starvation, and pattern of migration in native gel electrophoresis. At least four individual phosphatase activities were identified under the growth conditions employed. A pH 5.0 acid phosphatase and an Mg(2+)-dependent pH 7.5 phosphodiesterase were expressed under all growth conditions at constant rates. Under conditions of P-starvation, derepression of a major pH 6.0-acid phosphatase was observed in cell-free extracts and the culture medium. A synthesis of alkaline phosphatase activities followed a more distinct pattern. Under conditions of nutritional sufficiency of P- or N-starvation, only a single intracellular enzyme form (optimum pH 10) was observed, which was resolved as a single electrophoretic activity band. However, in media lacking C or S sources additional alkaline phosphatase forms were derepressed with a concomitant increase in the overall enzyme activity level measured at pH 10. To our knowledge, this report represents the most detailed study of phosphatases in Colletotrichum and the first partial characterization of the phosphatase system in an endophytic fungus.

Journal Article↗