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Extreme elevational migration spurred cryptic speciation in giant hummingbirds.

The ecoevolutionary drivers of species niche expansion or contraction are critical for biodiversity but challenging to infer. Niche expansion may be promoted by local adaptation or constrained by physiological performance trade-offs. For birds, evolutionary shifts in migratory behavior permit the broadening of the climatic niche by expansion into varied, seasonal environments. Broader niches can be short-lived if diversifying selection and geography promote speciation and niche subdivision across climatic gradients. To illuminate niche breadth dynamics, we can ask how "outlier" species defy constraints. Of the 363 hummingbird species, the giant hummingbird (Patagona gigas) has the broadest climatic niche by a large margin. To test the roles of migratory behavior, performance trade-offs, and genetic structure in maintaining its exceptional niche breadth, we studied its movements, respiratory traits, and population genomics. Satellite and light-level geolocator tracks revealed an >8,300-km loop migration over the Central Andean Plateau. This migration included a 3-wk, ~4,100-m ascent punctuated by upward bursts and pauses, resembling the acclimatization routines of human mountain climbers, and accompanied by surging blood-hemoglobin concentrations. Extreme migration was accompanied by deep genomic divergence from high-elevation resident populations, with decisive postzygotic barriers to gene flow. The two forms occur side-by-side but differ almost imperceptibly in size, plumage, and respiratory traits. The high-elevation resident taxon is the world's largest hummingbird, a previously undiscovered species that we describe and name here. The giant hummingbirds demonstrate evolutionary limits on niche breadth: when the ancestral niche expanded due to evolution (or loss) of an extreme migratory behavior, speciation followed.

Animals

Assessment of chemotactic activity by means of implanted sponges. With 4 figures.

In order to estimate chemotactic activity in vivo, a model of acute inflammation, the subdermal implantation of inert sponges was used. In vitro produced chemotactic active lymphokine preparations had no stimulating effect on the migration of leucocytes into the sponges. But PPD (12.5 micrograms/sponge) and PHA (40 microliters/sponge) induced in sensitized and non-sensitized mice, respectively, locally chemotactic active mediators, which increased the migration into the sponges. Phenylbutazone, dexamethasone and cyclophosphamide prevented the PPD- and PHA-induced elevated migration of leucocytes into the sponges.

Animals

Differences between adult and foetal fibroblasts in the regulation of hyaluronate synthesis: correlation with migratory activity.

We have previously reported that confluent foetal fibroblasts migrate into three-dimensional collagen gel matrices to a significantly greater extent than do adult cells. Hyaluronic acid (HA) is a major constituent of the extracellular matrix deposited by fibroblasts and has been demonstrated to stimulate the migration of a number of different cell types. Previous studies have indicated that the synthesis of HA by normal adult skin fibroblasts declines significantly when the cells achieve confluence. Data presented in this paper indicate that foetal fibroblasts differ from adult cells in this respect, in that they do not show an inverse relationship between cell density and HA synthesis, i.e. confluent foetal fibroblasts continue to produce approximately the same amount of HA as do subconfluent cells. These data suggest that the synthesis of relatively high levels of HA by foetal fibroblasts at confluence may be causally related to the elevated migration displayed by these cells. In this context, a close correlation was observed between the level of HA synthesized by confluent foetal and adult fibroblasts and the differential migratory activity displayed by these cells. Such differences in HA synthesis and migratory behaviour were only apparent at cell confluence, with subconfluent foetal and adult fibroblasts being indistinguishable in terms of these two criteria. Our data further reveal that: (1) cell density affects the size class of HA synthesized by both foetal and adult cells; and that (2) there is a considerable degree of heterogeneity amongst the nine different fibroblast lines examined in this study in terms of the size class of HA that they produce.

Adult

Postoperative proximal migration in total shoulder arthroplasty. Incidence and significance.

A retrospective review of 131 Neer total shoulder arthroplasties in 111 patients performed between 1974 and 1986 was undertaken to identify factors associated with proximal humeral migration. The influence of proximal migration on results was evaluated to clarify the indications for prosthetic constraint. The average follow-up period was 55 months (range: 24-124 mo). The results showed proximal migration in 22% of patients (29 shoulders). The migration was progressive in all cases, without corresponding increases in pain. Major rotator cuff tears were present in 21% of patients with a normal glenohumeral relationship and in 24% of the patients with proximal migration. Limited elevation was noted in patients with proximal migration, but all patients had improved range of motion and decreased postoperative pain. The cause of postoperative proximal migration is believed to be secondary to a combination of factors and not rotator cuff disruption alone. These data do not support the routine use of a constrained prosthesis for irreparable rotator cuff tears.

Humans

Impact of NR4A3 on wound healing in chronic venous ulcers and its association with the PI3K/Akt signaling pathway.

BACKGROUND: To investigate the role of NR4A3 in chronic venous ulcer (VU) wound healing and to explore its potential regulatory mechanism involving the PI3K/Akt pathway. METHODS: Differential expression and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses were performed using the GSE174661 dataset. DEGs were filtered by |log2FC| > 1 and adjusted P < 0.05, with KEGG significance set at P < 0.05. NR4A3 was identified as the core gene. NR4A3 knockdown and overexpression were established in HaCaT cells to evaluate proliferation, migration, and inflammatory cytokines. TNF-&#x3b1; was used to mimic the inflammatory microenvironment. Western blotting assessed phosphorylation of GSK3&#x3b2;, mTOR, PI3K, and Akt. PI3K/Akt agonist 740Y-P and inhibitor LY294002 were used in rescue experiments. RESULTS: Bioinformatic analysis revealed that NR4A3 expression was markedly downregulated in chronic venous ulcer (VU) tissues relative to normal skin and ordinary acute wound tissues. Differentially expressed genes were significantly enriched in the PI3K/Akt signaling pathway. TNF-&#x3b1; stimulation significantly upregulated NR4A3 expression and increased phosphorylation of GSK3&#x3b2; and mTOR in HaCaT cells. In cultured HaCaT keratinocytes, NR4A3 knockdown suppressed cell proliferation and invasion, enhanced cell migration, and elevated the expression and secretion of pro-inflammatory cytokines (IL-6, IL-8, CXCL5), accompanied by reduced phosphorylation of PI3K and Akt. Conversely, NR4A3 overexpression promoted cell proliferation and invasion, restrained migration, and dampened inflammatory responses, while increasing PI3K/Akt phosphorylation. Treatment with the PI3K/Akt agonist 740Y-P partially rescued the impaired proliferation, aberrant migration, and excessive inflammation caused by NR4A3 silencing, whereas PI3K/Akt inhibitor LY294002 aggravated pathway suppression. These findings suggest that NR4A3-associated changes in keratinocyte functions and inflammatory reactions are functionally linked to PI3K/Akt pathway activity, and inflammatory stimulation activates GSK3&#x3b2;/mTOR signaling accompanied by compensatory NR4A3 upregulation. CONCLUSION: These findings suggest that NR4A3 is associated with keratinocyte behavior and inflammatory responses via the PI3K/Akt pathway, potentially affecting chronic VU progression and healing. Reduced NR4A3 may impair wound repair through inflammation and abnormal cell migration, while TNF-&#x3b1; induces compensatory NR4A3 elevation.

NR4A3

Antagonistic effects of TGF-beta 1 and MSF on fibroblast migration and hyaluronic acid synthesis. Possible implications for dermal wound healing.

The migration of adult skin fibroblasts into three-dimensional collagen gel matrices is differentially affected by cell density, with subconfluent cells displaying a significantly elevated level of migration compared to confluent ones. Fetal fibroblasts differ from adult cells in that they display an elevated level of migration at both subconfluent and confluent cell densities. We have previously reported that this difference in behaviour results from the secretion by fetal fibroblasts of a 'migration stimulating factor' (MSF) which is not made by their normal adult counterparts, and that MSF appears to act by stimulating the synthesis of hyaluronic acid (HA). Data presented in this communication indicate that (a) MSF specifically stimulates the synthesis of high molecular weight species of HA, (b) TGF-beta 1 inhibits the elevated migration of adult fibroblasts plated at subconfluent cell density, (c) under these conditions, TGF-beta 1 induces a parallel decrease in the synthesis of high molecular weight HA and increase in the synthesis of low molecular weight HA, (d) TGF-beta 1 is a potent antagonist of MSF, effectively blocking its stimulation of cell migration and synthesis of high molecular weight HA, and (e) the inhibition of fibroblast migration by TGF-beta 1 does not appear to be a chemotactic response dependent upon the existence of a concentration gradient of the cytokine. Our observations regarding the inhibitory effects of TGF-beta 1 on fibroblast migration into 3D collagen gels stand in marked contrast to various published reports indicating that this cytokine stimulates the migration of human skin fibroblasts through the pores of polycarbonate filters as used in modified Boyden chamber assays; this discrepancy underscores the importance of the substratum in modulating cellular response to cytokines. Our results are discussed in terms of the possible combined contribution of MSF and TGF-beta 1 to wound healing.

Cell Movement

Effects of ascorbate on leucocytes: Part I. Effects of ascorbate on neutrophil motility and intracellular cyclic nucleotide levels in vitro.

A preliminary series of experiments indicated that ascorbic acid and calcium and sodium ascorbate in the absence of serum had no stimulatory effect on neutrophil motility. However, when neutrophils were pre-incubated with ascorbate at concentrations between 5 X 10(-2)M and 1 X 10(-1)M in the presence of fresh normal autologous serum (5% final concentration) considerable stimulation of random motility and migration towards the leuco-attractants C5a and casein was observed. The serum factor required for ascorbate-mediated enhanced locomotion was heat unstable and was probably not serum albumin since no stimulation of cell migration was observed when serum was replaced with varying amounts of human serum albumin. Calcium ascorbate was the most potent stimulant of neutrophil motility. Concentrations of calcium and sodium ascorbate which increased migration promoted elevation of intracellular cyclic guanosine monophosphate (cGMP) levels, but not of adenosine monophosphate (cAMP). These same concentrations also caused increased glyclytic activity. It is suggested that the enhanced neutrophil motility mediated by ascorbic acid and calcium and sodium ascorbate in the presence of serum may be due to increased cGMP and/or glycolysis.

Ascorbic Acid

Antitumor effect of RBS (rice bran saccharide) on ENNG-induced carcinogenesis.

We examined whether orally administered RBS (rice bran saccharide), prepared from rice bran by hot water extraction, increases immunocompetence, inhibits gastrointestinal carcinogenesis with N-ethyl-N'-nitro-N-nitrosoguanidine (ENNG) or shows an antitumor effect. After the administration of RBS, phytohemagglutinin (PHA)- and pokeweed mitogen (PWM)-stimulated blastogenesis of lymphocytes derived from the mesenteric lymph nodes and peripheral blood was enhanced, and the helper/suppressor T-cell ratio was elevated, and migration activity of peritoneal macrophages was also increased in rats treated continuously with ENNG. ENNG-induced gastrointestinal carcinomas were observed in 43% of those administered RBS (ENNG-RBS) as compared with 88% in the control (ENNG) and 94% in the prednisolone (PRD) group (ENNG-PRD). The 12-month survival rate of rats bearing gastrointestinal cancer was 58% in the ENNG-RBS group as compared with 25% in the ENNG group and 15% in the ENNG-PRD group. RBS prevented the reduction in immunocompetence in the course of carcinogenesis, suppressed carcinogenesis, and prolonged the survival of rats with gastrointestinal cancer. Antitumor activities of RBS are thought to be a kind of host mediated action. The growth inhibition ratio of transplantable ENNG-induced cancer in Wistar rats was 42.1% in the RBS and 51.8% in the 5-FU group. Since little is known about the potent antitumor activity of alpha-glucan, it would be interesting to consider the relationship between the structure and the biological activities of polysaccharides.

Adjuvants, Immunologic

Blood pressure and rural--urban migration in Iran.

To find the possible association between rural-urban migration and elevation of blood pressure a cross-sectional study was carried out with 379 subjects 40--59 years of age in rural areas of East Azarbaijan, northwest Iran. Another cross-sectional study was carried out in Teheran City in which 403 migrants from the same rural areas and also 357 non-migrant urban residents of the same age group from both sexes were examined. Comparison of the three groups showed that, in all age and sex groups, migrants had higher systolic and diastolic blood pressure than did the people in the rural areas of origin. The blood pressure levels of migrants and non-migrants in the city were not much different from each other. The effect of other variables on the levels of blood pressure was investigated. Age, sex and body build (as measured by ponderal index) were also associated with blood pressure. None of these factors however explained the differences in blood pressure levels between rural-urban migrants and people in the rural areas of origin.

Adult

Migration of the elderly from high altitudes in Colorado.

The reason for the reported decline in the proportion of elderly (greater than 60 years) persons at high (greater than 2,456 m) compared with low altitude (less than 1,376 m) in Colorado was unknown. We hypothesized that adverse effects of high altitude on the elderly, particularly those with heart and lung diseases, prompted their migration to lower elevations. Colorado census data indicated that selective out-migration occurred from high to low altitude among the elderly. Interviews (n = 833) in high- and low-altitude Colorado towns revealed that the elderly were unique in that they moved down for reasons of poor health and that for the majority (81%) ill health meant heart and lung diseases. Elderly migrants from high altitude reported heart and lung diseases more frequently than those remaining and cited improvement in symptoms at low altitude. We suggest that symptoms of heart and lung disease are exacerbated with advancing age at high altitude and influence choice of residence.

Aged

Heterogeneity amongst fibroblasts in the production of migration stimulating factor (MSF): implications for cancer pathogenesis.

Fetal skin fibroblasts migrate into 3D collagen gels to a significantly greater extent than do adult cells. This enhanced motility of fetal fibroblasts appears to result from the production of a "migration stimulating factor" (MSF) which is not made by their normal adult counterparts. Adult skin fibroblasts retain responsiveness to MSF and cells exposed to this factor achieve the elevated levels of migration characteristic of fetal cells. MSF has been purified to homogeneity, has an apparent molecular mass of 70 kD and has been further characterized in terms of a number of biochemical parameters. Studies concerned with the mechanism of action of MSF indicate that it stimulates the production of a high molecular weight class of hyaluronic acid (HA). Concurrent exposure of cells to Streptomyces hyaluronidase blocks the stimulation of adult fibroblast migration by MSF. In a related series of experiments, we have shown that TGF-beta inhibits the effects of MSF on both cell migration and HA production. Taken together, these data suggest that the stimulation of fibroblast migration by MSF is dependent upon (and may directly result from) a primary induction of HA synthesis. We have previously reported that skin fibroblasts obtained from patients with sporadic and familial breast cancer, as well as the unaffected first-degree relatives of familial breast cancer patients, commonly display a fetal-like migratory phenotype. Subsequent work has indicated that (a) these fetal-like cells also produce MSF, and (b) detectable levels of MSF are present in the serum of sporadic breast cancer patients both prior to and following surgical resection of the primary tumor mass. On the basis of these and related observations, we have put forward an hypothesis suggesting that the disruption in normal epithelial-mesenchymal interactions caused by the persistent production of MSF by fibroblasts in the adult may contribute directly to the pathogenesis of an epithelial cancer. The demonstration of aberrant fibroblasts in sporadic cancer patients (both in our own and independent studies) is not consistent with the "germ-line genetic lesion" model commonly invoked to account for the presence of such cells in patients with hereditary cancer syndromes.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Glial cells: modulators of neuronal environment.

Studies of glial cells in neural tissue culture systems suggest that glial cells subserve different functions during development and aging of the central nervous system and that they may help modulate the neuronal environment by virtue of their responsiveness to hormones and other intrinsic factors. There is a marked proliferation of glial cells during early stages of brain development, probably reflecting the involvement of glial cells in myelination and other growth processes. Studies in culture suggest that proliferation of glial cells can be induced by steroid hormones. The migration rate of glial cells from cerebellar explants of embryonic chick brain grown in organotypic culture was measured in control and hormone-treated explants. Treatment with cortisol, corticosterone, estradiol, and progesterone significantly elevated glial cell migration from the tissue explants. The influence of steroid hormones on glial cells may be mediated via a steroid intracellular mechanism. In C-6 glioma cells and in chick embryo dissociated brain cell cultures consisting predominantly of glial cells, 3H-corticosterone was shown to accumulate by a saturable but non-specific retention mechanism. In contrast, the accumulation of 3H-corticosterone by predominantly neuronal cultures was both saturable and specific. Glial cells in culture exhibit certain age-related changes, including changes in resting membrane potentials and in cellular responses to hormone treatment, as measured by changes in incorporation of 3H-leucine into protein and incorporation of 3H-uridine into RNA. The possibility that glial cells in vivo may likewise exhibit differential responses to hormones throughout the lifespan suggests that hormones may markedly influence cellular aging.

Aging

Pairing of homologous DNA sequences by proteins: evidence for three-stranded DNA.

We show that recombinases form joint molecules over very short regions of homology. When these molecules are deproteinized the three strands are in a structure that is surprisingly resistant to dissociation by branch migration, even at elevated temperatures. The joint molecules dissociate at temperatures comparable to those required to melt DNA duplexes of the same length and sequence. We also show that nonenzymatically formed structures of the same length and sequence, which have a free third strand ready to branch migrate, dissociate at much lower temperatures. These results provide compelling evidence that the three DNA strands in the region of pairing are hydrogen bonded to each other. Our observations suggest that such a novel three-stranded DNA molecule, or a structure very similar to it, may be the intermediate in general recombination that is used in the recognition of sequence homology. We discuss some of the structural features implicit in this molecule containing any base sequence and compare them with those manifest in true DNA triple helices containing special sequence motifs.

Animals

Foetal and cancer patient fibroblasts produce an autocrine migration-stimulating factor not made by normal adult cells.

We have previously reported that (1) the migration of foetal and adult fibroblasts into three-dimensional collagen matrices is differentially affected by cell density, and (2) skin fibroblasts from cancer patients commonly display a foetal-like mode of migratory behaviour. Data presented here indicate that differences in the migration of these cell types are particularly apparent in cultures plated at high density (i.e. at cell confluence); under these conditions, foetal fibroblasts and the foetal-like fibroblasts of cancer patients migrate into the three-dimensional collagen matrix to a significantly greater extent than do normal adult cells. In this initial study concerned with the biochemical basis of these observations, we report that medium conditioned by either foetal or cancer patient fibroblasts stimulates the migration of confluent adult cells. This stimulation of migration is specific to confluent cells, as the migration of subconfluent adult fibroblasts is unaffected by these conditioned media. Gel filtration chromatography of foetal fibroblast-conditioned medium indicates that migration-stimulating activity is recovered in a single peak with an apparent molecular mass in the range of 50-60 (X 10(3]. The active migration stimulating factor (MSF) in both foetal and cancer patient fibroblast-conditioned media appears to be a protein stable at acid pH, but inactivated by heat, alkaline pH and reductive alkylation. MSF produced by foetal and cancer patient fibroblasts is presumably responsible for the characteristically elevated levels of migration displayed by these cells in confluent culture, thereby suggesting an autocrine mode of action for this factor.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Movement

Effect of the interferon inducer tilorone in inbred CBA mice.

Tilorone hydrochloride (200 mg/kg) was administered intragastrically to inbred CBA mice. After 5, 18 and 48 hr the number of circulating leucocytes and peritoneal cells as well as the migration of unstimulated peritoneal cells, the blood corticosteroid level and interferon production were investigated. In spite of the considerable decrease of the number of mononuclear cells in the blood and polynuclear ones in the peritoneal exudate, the drug induced production of circulating interferon and stimulated its synthesis by peritoneal cells. The blood corticosteroid level and the mast cell count in the peritoneal cavity were significantly elevated, but the migration of peritoneal cells in antigen-free medium decreased.

Administration, Oral

Effects of concanavalin A and cholera toxin on epidermal cAMP and migration rate during wound closure in adult newts.

Following removal of a skin patch from each hind limb of a series of adult newts, the limbs were explanted into small dishes of Holtfreter solution containing various combinations of test drugs. Later, the amount of wound epithelium that formed on each limb was determined using a planimeter on wound tracings obtained with the aid of a drawing tube-equipped microscope. Exposure of migrating cells to the plant lectin, concanavalin A (con A), lowered cyclic AMP (cAMP) levels and depressed migration. Exposure to cholera toxin and theophylline (CTX) significantly elevated cAMP levels and significantly depressed migration rate. Exposure of CTX-treated cells to con A tended to lower CTX-elevated cAMP levels while depressing the migration rate well beyond the depression caused by CTX alone. These results provide further evidence that cAMP can regulate the rate of newt epidermal cell migration. They also show that the inhibitory effect of con A on motility in these cells is independent of its effects on cAMP.

Animals

Live but not heat-killed mycobacteria cause rapid chemotaxis of large numbers of eosinophils in vivo and are ingested by the attracted granulocytes.

We studied leukocyte chemotaxis triggered by a local injection of mycobacteria (Mycobacterium avium and M. smegmatis) in BALB/c and C57BL/6 mice. Our experimental model consisted of the induction of a subcutaneous air pouch in the dorsal area of mice and inoculation 6 days later of 10(8) CFU of myocobacteria. Inflammatory exudates were harvested from the air pouch cavities 15, 30, and 45 min after the injection of the inocula. Injection of the microorganisms resulted in the migration of an elevated number of eosinophilic granulocytes into the inflammatory cavities. At 30 min after the inoculation of the mycobacteria, the air pouches contained between (3.9 +/- 0.3) x 10(5) (M. avium) and (3.3 +/- 0.3) x 10(5) (M. smegmatis) eosinophils, corresponding to more than one-third (41.4 to 38.3%) of the leukocytes present in the inflammatory cavities. Less than one-half of the eosinophils were attracted to the air pouches when the same number of heat-killed mycobacteria were inoculated [(1.3 +/- 0.2) x 10(5) cells for M. avium and (1.5 +/- 0.2) x 10(5) cells for M. smegmatis]. Injection of gram-negative bacteria (Escherichia coli), of latex beads, or of casein resulted in the attraction of inflammatory eosinophils in numbers that were comparable to those attracted by the heat-killed mycobacteria. Our data document the fact that live mycobacteria exert a rapid chemotactic effect on eosinophils. We therefore postulate that mycobacteria either contain or induce the production of an eosinophilotactic factor. Because this chemotactic effect occurs during the acute inflammatory response to mycobacteria, it cannot be due to the formation of immune complexes (a major infection-associated chemotactic factor for eosinophils). The attracted eosinophils had an important role in the local phagocytosis of mycobacteria, as indicated by our finding, derived from thin-section electron microscopy quantifications, that at 30 min after M. avium inoculation the inflammatory exudates contained (2.2 +/- 0.5) x 10(5) mycobacterium-bearing eosinophils (corresponding to 57% of the total eosinophils), as compared with (2.1 +/- 0.1) x 10(5) neutrophils and (1.5 +/- 0.2) x 10(5) macrophages with ingested bacilli. We conclude that mycobacteria induce the attraction of eosinophils to inflammatory sites and that these granulocytes have the capacity to phagocytize these bacilli in situ.

Animals

[Determination of a factor inhibiting migration of leukocytes to brain antigens, its concentration in serum and spontaneous leukocyte migration in multiple sclerosis].

The authors examined 58 patients with multiple sclerosis and 56 healthy donors. The patients presented elevated production of the migration inhibition factor (MIF) by lymphoid cells to cerebral tissue antigens, most expressed in the acute period of the disease. The blood serum of patients with multiple sclerosis showed inhibitory activity, lymphocytes spontaneously produced the MIF in vitro. Hyperproduction of lymphokins may serve as one of the pathogenetic factors of generalization of the inflammatory process in the central nervous system in patients with multiple sclerosis and indicates impaired regulation of immunity.

Brain