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Differential expression of TGF beta 1, beta 2 and beta 3 genes during mouse embryogenesis 总被引:13,自引:0,他引:13
We have examined by Northern analysis and in situ hybridisation the expression of TGF beta 1, beta 2 and beta 3 during mouse embryogenesis. TGF beta 1 is expressed predominantly in the mesodermal components of the embryo e.g. the hematopoietic cells of both fetal liver and the hemopoietic islands of the yolk sac, the mesenchymal tissues of several internal organs and in ossifying bone tissues. The strongest TGF beta 2 signals were found in early facial mesenchyme and in some endodermal and ectodermal epithelial cell layers e.g., lung and cochlea epithelia. TGF beta 3 was strongest in prevertebral tissue, in some mesothelia and in lung epithelia. All three isoforms were expressed in bone tissues but showed distinct patterns of expression both spatially and temporally. In the root sheath of the whisker follicle, TGF beta 1, beta 2 and beta 3 were expressed simultaneously. We discuss the implication of these results in regard to known regulatory elements of the TGF beta genes and their receptors. 相似文献
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Developmental expression of the Xenopus Nkx2-1 and Nkx2-4 genes 总被引:1,自引:0,他引:1
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Dkk1, -2, and -3 expression in mouse craniofacial development 总被引:2,自引:0,他引:2
Nie X 《Journal of molecular histology》2005,36(5):367-372
Summary The Dickkopf family is important for embryogenesis and postnatal development and growth. Dkk1 is a strong head inducer and
knockout of this gene leads to absence of anterior head structures, which are predominantly formed through neural crest migration.
During early craniofacial development, Dkk1 to Dkk3 show developmentally regulated expression in a number of elements. However, their expression and roles in late times of craniofacial
development are largely unknown. This study focuses on the expression profile of Dkk1-3 on late embryonic and early postnatal stages. It was found that Dkks were involved in a variety of craniofacial developmental processes, including facial outgrowth, myogenesis, osteogenesis,
palatogenesis, olfactory epithelium and tooth development; and the expression persisted to postnatal stage in the muscles
and bones. Their expression patterns suggest important roles in these processes; further study is warranted to elucidate these
roles. 相似文献
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Polvani S Masi A Pillozzi S Gragnani L Crociani O Olivotto M Becchetti A Wanke E Arcangeli A 《Gene expression patterns : GEP》2003,3(6):767-776
Deciphering the expression pattern of K+ channel encoding genes during development can help in the understanding of the establishment of cellular excitability and unravel the molecular mechanisms of neuromuscular diseases. We focused our attention on genes belonging to the erg family, which is deeply involved in the control of neuromuscular excitability in Drosophila flies and possibly other organisms. Both in situ hybridisation and RNase Protection Assay experiments were used to study the expression pattern of mouse (m)erg1, m-erg2 and m-erg3 genes during mouse embryo development, to allow the pattern to be compared with their expression in the adult. M-erg1 is first expressed in the heart and in the central nervous system (CNS) of embryonic day 9.5 (E9.5) embryos; the gene appears in ganglia of the peripheral nervous system (PNS) (dorsal root (DRG) and sympathetic (SCG) ganglia, mioenteric plexus), in the neural layer of retina, skeletal muscles, gonads and gut at E13.5. In the adult m-erg1 is expressed in the heart, various structures of the CNS, DRG and retina. M-erg2 is first expressed at E9.5 in the CNS, thereafter (E13.5) in the neural layer of retina, DRG, SCG, and in the atrium. In the adult the gene is present in some restricted areas of the CNS, retina and DRG. M-erg3 displayed an expression pattern partially overlapping that of m-erg1, with a transitory expression in the developing heart as well. A detailed study of the mouse adult brain showed a peculiar expression pattern of the three genes, sometimes overlapping in different encephalic areas. 相似文献
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Marsillach J Mackness B Mackness M Riu F Beltrán R Joven J Camps J 《Free radical biology & medicine》2008,45(2):146-157
The paraoxonase (PON) enzyme family, comprising PON1, PON2, and PON3, are antioxidant enzymes that degrade oxidised phospholipids. We describe the immunohistochemical localisation of the PON proteins in the normal mouse. Antibodies were obtained by inoculating rabbits with peptides derived from specific sequences of mature PONs. PON1 and PON3 were detected in the skin external epithelium, acini of the sebaceous glands, tongue epithelium, acini of the submandibular gland, surface epithelia of the stomach and the intestine, hepatocytes, exocrine pancreas acini, fibre tracts of the encephalon and the spinal cord, skeletal and cardiac muscle, eye lens epithelium and retinal layers, adipocytes, chondrocytes, epithelial cells of the trachea and bronchiole, ovary follicular fluid, seminiferous tubules, spermatozoa, and kidney proximal tubules. PON2 expression was weaker than that of PON1 and PON3, and was absent in some of the tissues studied, such as submandibular gland, nerve cells, and adipocytes. In muscle cells, PON2 expression was restricted to the endomysium. Apolipoprotein A-I did not colocalise with PONs, suggesting local synthesis. This study provides an experimental model to investigate the role played by these enzymes as antioxidants and their relationship with the development of a variety of diseases. 相似文献
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Katherine A. Coerver S. M. Gray James E. Barnes Dawna L. Armstrong E. R. B. McCabe 《Histochemistry and cell biology》1997,109(1):75-86
Mammalian hexokinase types one and three (HK1 and HK3) are 100 kDa isozymes that phosphorylate glucose to glucose-6-phosphate.
HK1 is present in most tissues but is especially prominent in brain and kidney. HK3 is less well studied, but may be most
prominent in the spleen and lymphocytes. In this study, we determined the ontogeny of the expression of these isoforms in
the rat. Using immunohistochemistry, we identified HK1 and HK3 immunoreactivity in the brain, heart, kidney, liver, skeletal
muscle and spleen from gestational day 14 (E14) to 45 days after birth (P45). With the exception of the liver and spleen,
we observed a similar age- and cell-dependent staining pattern for both isoforms in all organs studied. The brain and spleen
were analyzed in more detail to identify specific regions of immunoreactivity during maturation. A transient expression of
HK1 and HK3 was noted in the cell bodies of mature neurons, including layers V and VI of the cerebral cortex and the cerebellar
Purkinje cells followed by localization to the white matter of the cerebrum and cerebellum. In the spleen, HK3 immunoreactivity
was detected postnatally and appeared to track with the infiltration of B cells. Our demonstration of changing patterns of
immunoreactivity for HK1 and HK3 in fetal and postnatal organs suggests that these HK isoforms are involved the process of
development. We speculate that HK1 and HK3 share a complex interaction during development of these organs and regulate glucose
metabolism at multiple levels during development.
Accepted: 16 May 1997 相似文献
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猪脂肪组织中IGF2和IGFBP3基因表达的发育性变化及其品种差异 总被引:2,自引:0,他引:2
采用荧光定量PCR技术分析长白猪和太湖猪背部皮下脂肪组织中胰岛素样生长因子2和胰岛素样生长因子结合蛋白3基因在30、60、90、120和150日龄时表达水平的发育性变化。结果表明: (1)品种内日龄间比较, 长白猪IGF2 mRNA 在30日龄时的表达量极显著高于其他日龄(P<0.01), 之后逐渐下降, 至120日龄降到最低, 150日龄时又明显上升; 太湖猪IGF2 mRNA在30~60日龄的表达量较高, 90日龄降至最低, 120日龄迅速回升, 之后又有所下降。两品种IGFBP3 mRNA表达的发育性变化模式基本相同, 30日龄时表达量最高, 60日龄显著下降(P<0.05), 之后趋于平缓但略有波动。(2)品种间同日龄比较, 120日龄时太湖猪IGF2 mRNA的表达量极显著高于长白猪(P<0.01), 150日龄时太湖猪IGFBP3的表达量极显著低于长白猪(P<0.01), 其余日龄间两品种差异均不显著(P>0.05)。研究结果提示: 猪脂肪组织IGF2和IGFBP3基因表达存在明显的发育性变化和品种差异; IGF2基因表达水平的降低可能与脂肪细胞的增殖有关。 相似文献
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Simultaneous disruption of mouse ASIC1a, ASIC2 and ASIC3 genes enhances cutaneous mechanosensitivity
Three observations have suggested that acid-sensing ion channels (ASICs) might be mammalian cutaneous mechanoreceptors; they are structurally related to Caenorhabditis elegans mechanoreceptors, they are localized in specialized cutaneous mechanosensory structures, and mechanical displacement generates an ASIC-dependent depolarization in some neurons. However, previous studies of mice bearing a single disrupted ASIC gene showed only subtle or no alterations in cutaneous mechanosensitivity. Because functional redundancy of ASIC subunits might explain limited phenotypic alterations, we hypothesized that disrupting multiple ASIC genes would markedly impair cutaneous mechanosensation. We found the opposite. In behavioral studies, mice with simultaneous disruptions of ASIC1a, -2 and -3 genes (triple-knockouts, TKOs) showed increased paw withdrawal frequencies when mechanically stimulated with von Frey filaments. Moreover, in single-fiber nerve recordings of cutaneous afferents, mechanical stimulation generated enhanced activity in A-mechanonociceptors of ASIC TKOs compared to wild-type mice. Responses of all other fiber types did not differ between the two genotypes. These data indicate that ASIC subunits influence cutaneous mechanosensitivity. However, it is unlikely that ASICs directly transduce mechanical stimuli. We speculate that physical and/or functional association of ASICs with other components of the mechanosensory transduction apparatus contributes to normal cutaneous mechanosensation. 相似文献
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Shimizu S Saito N Kubosaki A SungWook S Takeyama N Sakamoto T Matsumoto Y Saeki K Matsumoto Y Onodera T 《Biochemical and biophysical research communications》2001,288(1):165-171
Islet antigen (IA)-2 is a novel autoantigen of insulin-dependent diabetes mellitus (IDDM), and belongs to a new class within the receptor-type protein tyrosine phosphatase (PTP) family characterized by lack of PTP enzymatic activity with conventional substrates. Its expression is restricted primarily to the pancreas, pituitary, and brain with the highest level in the brain. IA-2 mRNA expressions in the brain, pituitary and pancreas of 1-, 4-, and 8-week-old mice were examined. In situ hybridization of the brain revealed that IA-2 mRNA was expressed in the cerebral cortex, hippocampus, thalamus, choroid plexus, hypothalamus, Purkinje cells, and granular layer of the cerebellum. In the pituitary, IA-2 mRNA was located in the anterior and posterior pituitary by in situ hybridization. The pattern of IA-2 mRNA expression in normal male mouse brain at 1, 4, and 8 weeks of age by the Northern blot analysis was similar to that in the pituitary by RT-PCR analysis. The expression level was higher at 4 weeks and lower at 1 week of age. In the pancreas, IA-2 mRNA expressions detected by RT-PCR were highest at 8 weeks of age. These results indicated that the amount of mRNA expression increased in accordance to development in brain, pituitary, and pancreas. 相似文献
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The Notch signalling pathway defines a phylogenetically conserved cell-cell communication process that enables cell-fate specification in multicellular organisms. Deltex is a component of the Notch signalling network that physically interacts with the ankyrin repeats of Notch. Here, we report on the expression pattern of the Deltex1 gene during mouse embryonic development and, furthermore, we compare its expression with that of the Notch1, 2 and 3 genes. Complementary and combinatorial expression patterns between Deltex1 and the three Notch genes were observed throughout embryogenesis since Deltex1 expression was related either to cytodifferentiation (i.e. neuronal tissues) or to cell proliferation events (i.e. eye, vascular structures, hematopoiesis). 相似文献