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Biomedical subjects

D W Burt

Publications and source records attributed to D W Burt.

At least 19 recordsLinked to original sources

Expression of genes encoding bone morphogenetic proteins and sonic hedgehog in talpid (ta3) limb buds: their relationships in the signalling cascade involved in limb patterning.

The chicken mutant talpid3 (ta3) has polydactylous limbs with up to 7-8 morphologically similar digits. This lack of antero-posterior polarity in digit pattern is correlated with symmetrical expression of genes of the HoxD complex. We determined the distribution of polarizing activity in limb buds of the chick mutant ta3 by assessing the ability of mesenchyme from various positions along the antero-posterior axis to induce digit duplications when grafted anteriorly into a normal limb. Cells with highest polarizing activity were found at the posterior margin of the wing as in the polarizing region of normal limb buds. However, in contrast to normal limb buds, ta3 anterior mesenchyme also had low polarizing activity. Application of retinoic acid or a polarizing region graft to the anterior of ta3 limb buds changed digit morphology but did not induce digit duplications or digits with any characteristic a-p pattern. To determine which genes are associated with polarizing activity and which are associated with patterning of the digits, we examined expression of the genes Sonic hedgehog (shh), Bmp-2, and Bmp-7, whose expression is normally confined to the posterior margin of the early wing bud and is associated with the polarizing region. In addition, we determined the distribution of Fgf-4 transcripts which in normal limb buds are restricted to the posterior part of the apical ectodermal ridge. In ta3 limb buds, shh expression is restricted to the posterior limb mesenchyme, which has high polarizing activity, but is not expressed in regions which have low polarizing activity. In contrast, Bmp-2 and Bmp-7 are expressed uniformly along the a-p axis. Fgf-4 transcripts are present throughout the apical ectodermal ridge in ta3 limb buds. In the ta3 mutant, there is both an abnormal distribution of signalling activity and response to polarizing signals. In addition, the dissociation between the expression of shh and Bmps suggests distinct roles for the encoded molecules in signalling and response in a-p patterning of limb buds.

Animals

Expression of transforming growth factor-beta mRNA in chicken ovarian follicular tissue.

RNA was isolated from chicken thecal tissue from the largest (F1), third largest (F3), and fifth largest (F5) preovulatory follicles, from small yolky follicles, and from granulosa tissue from F1 follicles. Transforming growth factor-beta (TGF-beta) gene expression was measured using reverse transcription polymerase chain reaction. Thecal cells from all follicle sizes expressed all three isoforms of TGF-beta. TGF-beta 1 mRNA was detected in granulosa cells at levels comparable to those seen in thecal cells. However, TGF-beta 2 and TGF-beta 3 mRNA was expressed at significantly lower levels in granulosa than in thecal tissue. This is the first demonstration of TGF-beta gene expression in the ovary of a nonmammalian species. The similarities between mammalian and avian TGF-beta gene expression are remarkable, especially in light of the distinctive patterns of avian follicular development and the differing steroidogenic capacities of ovarian cell types of the two classes of vertebrates.

Animals

Chicken genome mapping: a new era in avian genetics.

More than 460 loci representing either expressed or anonymous sequences have been mapped on to the first comprehensive molecular genetic linkage map of the chicken genome. Here, we review the current status of poultry genome mapping and discuss some of the new opportunities this provides.

Animals

The chicken transforming growth factor-beta 3 gene: genomic structure, transcriptional analysis, and chromosomal location.

In this paper, we report the isolation, characterization, and mapping of the chicken transforming growth factor-beta 3 (TGF-beta 3) gene. The gene contains seven exons and six introns spanning 16-kb of the chicken genome. A comparison of the 5'-flanking regions of human and chicken TGF-beta 3 genes reveals two regions of sequence conservation. The first contains ATF/CRE and TBP/TATA sequence motifs within an 87-bp region. The second is a 162-bp region with no known sequence motifs. Identification of transcription start sites using chicken RNA isolated from various embryonic and adult tissues reveals two sites of initiation, P1 and P2, which map to these two conserved regions. Comparison of 3'-flanking regions of chicken and mammalian TGF-beta 3 genes also revealed conserved sequences. The most significant homologies were found in the 3'-most end of the transcribed region. DNA sequence analysis of chicken TGF-beta 3 cDNAs isolated by 3'-RACE revealed multiple polyadenylation sites unusually distant from a poly(A) signal motif. A Msc I restriction fragment length polymorphism (RFLP) marker was used to map the TGFB3 locus to linkage group E7 on the East Lansing reference backcross. Linkage to the TH locus showed that the TGFB3 locus was physically located on chicken chromosome 5.

Amino Acid Sequence

Insulin-like growth factor-I in the ovary of the laying hen: gene expression and biological actions on granulosa and thecal cells.

Concentrations of insulin-like growth factor-I (IGF-I) were measured in granulosa and thecal tissue dissected from the three largest follicles in the ovaries of laying hens. The higher concentration was found in extracts of granulosa (0.82 +/- 0.01 pmol/g wet wt) and theca (0.36 +/- 0.02), both of which were greater than that in liver extracts (0.25 +/- 0.01). RNA was extracted from these tissues, and by using reverse transcription and the polymerase chain reaction with primers specific for chicken IGF-I, both granulosa and thecal tissue were shown to express chicken IGF-I mRNA. Granulosa and thecal cell cultures were established and used to measure IGF binding sites and the response to exogenous IGF peptides in terms of DNA synthesis. Both cell types bound [125I]IGF-I, which was displaced by IGF-I, IGF-II, and insulin in descending order of potency, characteristic of a type-I IGF receptor. Treatment of granulosa and thecal cell cultures with IGF-I resulted in a dose-dependent increase in [3H]thymidine incorporation into DNA by both cell types. LH, but not FSH, stimulated DNA synthesis in cultured granulosa cells but not in cultured thecal cells. This effect was enhanced in granulosa cells by the addition of IGF-I to the culture medium. These data are consistent with an autocrine or paracrine role for IGF-I within the developing ovarian follicle of the domestic hen.

Animals

Tissue specific expression of an alpha-skeletal actin-lacZ fusion gene during development in transgenic mice.

Transgenic mice carrying a chimaeric transgene containing 730 bp of the 5'-flanking sequences and the entire first intron of the rat alpha-skeletal actin gene fused to the lacZ reporter gene have been produced by microinjection. The lacZ reporter gene was used to verify the suitability of using the rat alpha-actin promoter elements to target expression of genes of agricultural and therapeutic value exclusively to skeletal and heart muscle cells and fibres of transgenic mice. Expression of the transgene indicates a tightly regulated developmental and muscle specific control of the rat alpha-skeletal actin gene, making it a useful promoter for gene targeting to muscle tissues. The cells destined to form muscle tissues in these transgenic mice are readily visualized in intact embryos by staining for beta-galactosidase activity, making them a suitable animal model for studying the origin and development of skeletal and cardiac muscle tissues.

Actins

Evolution of the transforming growth factor-beta superfamily.

Transforming growth factor beta 1 (TGF-beta 1) is the prototype of an increasingly complex superfamily of growth and differentiation factors. To date, a total of 74 TGF-beta-like sequences have been published, probably representing 23 distinct genes. These sequences were obtained from mammalian, avian, amphibian and insect species, thus emphasising the ancient nature of the TGF-beta superfamily peptides. This article summarises current hypotheses concerning the evolutionary history of this protein superfamily, based on the molecular phylogeny of the published sequences. Comparison of the deduced amino acid sequences leads to the definition of five main groups within the superfamily (TGF-beta, Bone Morphogenetic Proteins [BMP], Anti-Müllerian Hormone [AMH], Inhibin alpha [INH alpha] and GDF-9) and six subgroups within the BMPs (60A, Decapentaplegic [dpp], Vg1, BMP-3, Inhibin beta [INH beta A/B] and nodal). This classification predicts possible phylogenetic and functional relationships among these proteins.

Amino Acid Sequence

Molecular cloning and expression of bone morphogenetic protein-7 in the chick epiphyseal growth plate.

Longitudinal bone growth occurs in the epiphyseal growth plate and is regulated by a network of paracrine and autocrine interactions. Bone morphogenetic proteins (BMPs) are a family of growth factors whose potent osteogenic properties suggest that they may play an important role within this network, but direct evidence for this is lacking. To address this question, a cDNA encoding chick BMP-7 was cloned from a chick embryo cDNA library. Sequence homology and evolutionary arguments strongly suggested that we had cloned the chicken BMP-7 homologue. Using a reverse transcription-PCR assay, BMP-7 expression was readily detected in bone, growth plate cartilage, brain and heart, and was just detectable in liver, skeletal muscle and adipose tissue. In contrast to the pattern of BMP-7 expression in the rat and mouse, no BMP-7 expression was detected in the chick kidney. In situ hybridization was used to locate the site of BMP-7 expression more precisely within the growth plate. BMP-7 expression was confined to hypertrophic chondrocytes adjacent to and at the tips of the metaphyseal vessels. No expression was detected in the reserve zone or in proliferating chondrocytes. These results point to a specific role for BMP-7 in the growth plate, possibly in osteoblast activation or as a chemotactic agent for the metaphyseal vessels.

Amino Acid Sequence

Multiple growth factor mRNAs are expressed in chicken adipocyte precursor cells.

We have examined the expression of growth factor genes in primary cultures of chicken adipocyte precursors. RNA was extracted from proliferating and differentiated cells, reversed transcribed and amplified by PCR using gene specific primers. The identity of the PCR products was confirmed by restriction mapping. We show, for the first time, constitutive expression of TGF-beta 2, TGF-beta 3, TGF-beta 4 and bFGF genes in chicken adipocyte precursors. We also detect GH-independent, but differentiation-dependent IGF-I gene expression. The synthesis and action of these growth factors supports the hypothesis that they act as autocrine and/or paracrine regulators of adipocyte precursor cell proliferation and differentiation.

Adipose Tissue

Evolutionary grouping of the transforming growth factor-beta superfamily.

TGF beta 1 is the prototype of a superfamily of differentiation factors with at least 18 distinct members. This classification is based on amino acid homology in the C-terminus of these polypeptides. The rates of amino acid substitution for several family members were estimated from a comparison of homologous sequences derived from different species. These rates were approximately constant for any given protein, but values varied greatly between different groups. This variation is a reflection of the great functional diversity found within the TGF beta superfamily. Maximum parsimony analysis allowed us to classify members of the TGF beta superfamily into five main groups (INH alpha, MIS, TGF beta s, INH beta s and BMPs) and various subgroups. This classification predicts possible phylogenetic relationships among these proteins. In the future, it is hoped that this method of classification will be adopted by all our colleagues, as an aid in deciding whether newly discovered proteins are the product of duplicated or homologous genes. This would suggest proteins with either similar or identical functions.

Amino Acid Sequence

Evolutionary origins of the transforming growth factor-beta gene family.

A molecular phylogeny for the transforming growth factor-beta (TGF-beta) gene family based on a comparison of nucleotide sequences is proposed. A phylogenetic tree constructed from these sequences shows that the family evolved from a common ancestral gene that came into existence at about the time of arthropod and chordate divergence. This model suggests that the present day TGF-beta gene family consists of four members: TGF-beta 1 (= TGF-beta 4), TGF-beta 2, TGF-beta 3, and TGF-beta 5. The molecular phylogeny and Southern hybridization data also suggest that the proteins for mammalian TGF-beta 1 and chicken TGF-beta 4 are the products of homologous rather than duplicated genes. If the gene duplication event that produced the ancestral gene for TGF-beta 1 occurred before the divergence of birds and mammals, then sufficient time would have elapsed to generate these quite distinct avian and mammalian TGF-beta 1 proteins. Therefore, the TGF-beta family contains four distinct proteins, TGF-beta 1, 2, 3, and 5.

Amino Acid Sequence

Estimation of restriction maps with known site order using a generalized linear model.

A generalized linear model with Gamma errors is used to estimate the coordinates of a restriction map when the site order is known. This can be conveniently programmed in a wide range of statistical packages (e.g. Genstat 5, Minitab, SAS), and gives maximum likelihood estimates with their associated optimal properties. Regression diagnostics allow the checking of assumptions and help to identify mis-specified, influential or discordant fragment lengths. A specific diagnostic for identifying fragment lengths causing reversal of restriction site order is derived. Exact 'fragment' lengths from DNA sequencing can be conveniently included in an approximate manner by giving them a larger weight than observed restriction fragment lengths. Two examples and the Genstat 5 codes used in their analysis are presented.

Algorithms

Cell-dependent posttranslational processing and secretion of recombinant mouse renin-2.

In the DBA/2 mouse submandibular gland (SMG), renin is predominantly the expression product of the renin gene Ren-2d. Prorenin is synthesized and rapidly converted to a constitutively secreted single-chain intermediate, which is then processed to and stored as the mature two-chain (2C) form, which is released by regulated secretion. To evaluate whether the mode of renin processing is cell dependent, renin (Ren-2d) complementary DNA was stably integrated in the genome of Chinese hamster ovary (CHO) cells and a mouse pituitary cell line (AtT-20) by transfection, and renin processing and secretion were examined. Transfected CHO cells secreted exclusively prorenin, whereas transfected AtT-20 cells secreted both prorenin and active renin. AtT-20 cells processed prorenin to the single-chain polypeptide (1C-renin) that was the main storage form and was not further processed to the 2C form of correct size, whose site of generation or function is uncertain at this time. In addition, the conversion of prorenin to 1C-renin was much slower in AtT-20 cells than in the SMG. Thus the patterns of renin biosynthesis and secretion in AtT-20 cells show major differences when compared with these processes in the native SMG, suggesting that cell-dependent characteristics, e.g., the presence of specific processing enzymes, are important factors influencing mouse renin processing.

8-Bromo Cyclic Adenosine Monophosphate