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Biomedical subjects

G Vogeli

Publications and source records attributed to G Vogeli.

At least 19 recordsLinked to original sources

High-sulfur protein gene expression in a transgenic mouse.

We analyzed the effect of minoxidil on hair follicles isolated from transgenic mice. These transgenic animals synthesize the reporter enzyme CAT in their hair follicles only during the active phases of hair growth. The recombinant gene used to generate these mice contained the bacterial enzyme CAT under the control of the promoter from the gene of UHS protein. Studies using in situ hybridization showed that UHS proteins are expressed specifically in the matrix cells of the hair follicle during the terminal stages of hair differentiation. Hence the expression of the UHS proteins is a clear sign of active hair growth. With other in situ hybridization studies we demonstrated that CAT mRNA is expressed in differentiating matrix cells of the hair shaft in a location similar to that in which mRNA encodes UHS proteins. Thus we can use the levels of CAT activity as a measure of hair growth. We have confirmed that expression of the transgene is found in hair that is high in anagen and low in catagen follicles. The usefulness of our model was further demonstrated by showing that minoxidil, a drug that stimulates hair growth, increased the expression of CAT in cultured hair follicles. Thus we have demonstrated that expression of this reporter gene is sensitive, hair specific, and also useful for monitoring effects in cultured hair follicles. Hence these transgenic mice provide a model system for studying the biology of hair growth.

Aging

Isolation of a mouse genomic clone containing four tRNACys-encoding genes.

A cluster of four tRNACys-encoding genes with the anticodon GCA was found on a murine genomic clone containing an 18-kb DNA insert. Three of the four genes encode the identical tRNA, whereas the fourth gene has an altered nucleotide (nt) sequence. Two of the genes within a 2-kb PvuII fragment have the same polarity and are separated by only 921 bp. These two tRNAs have a different primary sequence. The changes in the nt sequences occur within three stems of the tRNA cloverleaf structure and weaken the strength of the H-bonds within the stems. All four genes (designated i-iv) have the 3' structural element that has been proposed as the transcription termination signal [Bogenhagen and Brown, Cell 24 (1981) 261-270]. The remainder of the flanking regions of the three identical tRNAs are very similar to each other, whereas the flanking regions of the fourth tRNA are distinctly different.

Animals

Expression of calcyclin, a calcium-binding protein, in the keratogenous region of growing hair follicles.

Changes in calcium levels control the differentiation of skin epithelial cells and thus may also affect the epithelial cells of the hair follicle. We have isolated a murine cDNA clone, pCAL-F559, for the calcium-binding protein calcyclin by differential screening of a cDNA library made from RNA isolated from hair follicles of 6-d-old mice. The identity of our cDNA clone was established by comparing the DNA sequence with the sequence of the human calcyclin gene. That the authentic calcyclin mRNA encoded by pCAL-559 is present in skin of 3-d-old mice was confirmed by S1 nuclease protection assays. As measured by RNA dot blots, calcyclin mRNA levels in the skin change in accordance with the hair cycle and reaches a peak a few days prior to the mRNA for structural hair proteins. Although we can demonstrate by in situ hybridization that mRNA for calcyclin is localized in the post-mitotic keratogenous region of the hair follicle we can only assume that this calcium binding protein is involved in the control of differentiation of these cells by regulating their Ca++ levels.

Animals

Hair-specific keratins: characterization and expression of a mouse type I keratin gene.

A genomic clone for a member of the mouse type I hair keratin protein family has been isolated and analyzed in order to study the regulation of this keratin during the hair growth cycle. The coding sequence is divided into seven exons. The gene structure is typical of keratins in particular and intermediate filaments in general in that the intron-exon borders are not located at the domain borders of the protein. Comparison with a sheep wool keratin gene shows that the splice sites in the two hair keratin genes are found at identical locations relative to the amino acid sequence of the proteins. Similarly, comparison of the promoter areas of these genes shows several areas of nucleotide sequence conservation, including the area around the TATA box and an SV40 core enhancer sequence. In addition, a high degree of sequence identity exists in the fourth intron. In situ hybridization shows that transcripts of this gene are first found in the relatively undifferentiated proximal cortex area in the keratogenous zone of mouse vibrissae.

Amino Acid Sequence

Serine-rich ultra high sulfur protein gene expression in murine hair and skin during the hair cycle.

To study the regulation of hair differentiation, a murine genomic clone, gUHS-SER-M16, was isolated that contained two members of the family of serine-rich ultra high sulfur protein genes. One of the genes, gUHS-SER-1, encodes 230 amino acids with 40% cysteine and 23% serine; the other gene, gUHS-SER-2, encodes 223 amino acids with 41% cysteine and 21% serine. The similarity between the two genes is 73%, and both have several 10-amino acid repeats within their coding regions. In the prospective promoter region, there are several regions of similarity including a "TATA" box, with neither gene having a "CAT" box. At the 3' untranslated region, there is no similarity, and thus a fragment from this region was used as a hybridization probe for RNA dot-blots and for in situ hybridizations. The RNA dot-blot showed elevated levels of mRNA during the active phases of hair growth and low levels during the resting phases. In situ hybridizations show that mRNA for the ultra high sulfur protein gene is found during the active phases of the hair cycle not only in the medulla and the inner root sheath of the forming hair but also in upper layers of the epidermis of skin.

Amino Acid Sequence

Evolution of collagen IV genes from a 54-base pair exon: a role for introns in gene evolution.

The exon structure of the collagen IV gene provides a striking example for collagen evolution and the role of introns in gene evolution. Collagen IV, a major component of basement membranes, differs from the fibrillar collagens in that it contains numerous interruptions in the triple helical Gly-X-Y repeat domain. We have characterized all 47 exons in the mouse alpha 2(IV) collagen gene and find two 36-, two 45-, and one 54-bp exons as well as one 99- and three 108-bp exons encoding the Gly-X-Y repeat sequence. All these exons sizes are also found in the fibrillar collagen genes. Strikingly, of the 24 interruption sequences present in the alpha 2-chain of mouse collagen IV, 11 are encoded at the exon/intron borders of the gene, part of one interruption sequence is encoded by an exon of its own, and the remaining interruptions are encoded within the body of exons. In such "fusion exons" the Gly-X-Y encoding domain is also derived from 36-, 45-, or 54-bp sequence elements. These data support the idea that collagen IV genes evolved from a primordial 54-bp coding unit. We furthermore interpret these data to suggest that the interruption sequences in collagen IV may have evolved from introns, presumably by inactivation of splice site signals, following which intronic sequences could have been recruited into exons. We speculated that this mechanism could provide a role for introns in gene evolution in general.

Amino Acid Sequence

Hair-specific expression of chloramphenicol acetyltransferase in transgenic mice under the control of an ultra-high-sulfur keratin promoter.

We have generated a transgenic mouse line by microinjection of a chimeric DNA fragment (KER-CAT) containing a hair-specific, murine ultra-high-sulfur keratin promoter (KER) fused to the coding region of the bacterial chloramphenicol acetyltransferase (CAT) gene. A 671-base pair (bp) stretch of the 5' promoter region was used to direct the expression of the CAT gene in this construct. Of the tissues tested for CAT activity in these transgenic animals only skin with growing hair, isolated hair follicles, and microdissected vibrissae showed substantial levels of activity. These are the same tissues where the endogenous ultra-high-sulfur keratin gene is expressed as shown by in situ hybridization. Furthermore, analysis of the CAT activity during the developmental stages of the hair growth cycle shows that the chimeric gene is expressed during the anagen phase of the hair growth cycle; this is the expected time during development for its expression. From these results we conclude that 671 bp of the promoter sequence from the ultra-high-sulfur keratin gene is sufficient to direct the correct development-specific and tissue-specific expression of the reporter gene construct in transgenic mice. The appropriate expression of the KER-CAT construct in transgenic mice is an important step in understanding the regulation of this gene during hair organogenesis.

Animals

Altered steady-state mRNA levels of basement membrane proteins in diabetic mouse kidneys and thromboxane synthase inhibition.

We examined steady-state levels of mRNA encoding type IV collagen, B1 chain of laminin, and the basement membrane heparan sulfate proteoglycan in the kidney cortex of a mouse model (KKAy) of non-insulin-dependent diabetes. mRNAs encoding laminin B1 and the proteoglycan were unchanged in kidneys taken from diabetic mice with demonstrable basement membrane thickening. mRNA levels for type IV collagen, in contrast, were significantly elevated (2-fold) in diabetic mice concurrent with but not preceding morphologically thickened basement membranes. There was a negative correlation between a ratio of proteoglycan/type IV collagen and levels of albuminuria in the diabetic mice. No correlation was noted with laminin. We also examined the effects of inhibiting the synthesis of thromboxane, a potent vasoconstrictor, on the steady-state levels of type IV collagen in the diabetic mice. Inhibition of thromboxane stopped the progression of albuminuria and prevented an increase in type IV collagen mRNA levels. We conclude that basement membrane thickening in diabetes, a hallmark of diabetic nephropathy, is partly a consequence of an unbalanced increase in the production of type IV collagen. The relative decrease in proteoglycan production may contribute to chronic albuminuria.

Animals

Vimentin cDNA clones covering the complete intermediate-filament protein are found in an EHS tumor cDNA library.

Intermediate filaments are part of the cytoskeleton of most cells. To analyze changes in intermediate filament synthesis, we have isolated two cDNA clones (pV-C25, pV-C877) that cover the complete coding sequence of the murine intermediate filament protein vimentin. The cDNA clones were isolated from a murine Engelbreth-Holm-Swan (EHS) tumor cDNA library by screening under (i) non-stringent conditions with a synthetic oligodeoxynucleotide (oligo), LW-36, which is specific for type-IV collagen, and (ii) stringent conditions with oligo LW75, which was derived from the vimentin clone pV-C25. The cDNA clones contain 38 nucleotides (nt) of the 5'-untranslated region, 1398 nt of the coding region and 7 nt of the 3'-untranslated region. Comparing the mouse sequence with the published sequence for vimentin from hamster, human and chicken, we find shared identities of 99, 97 and 87%, respectively. Since the cDNA clones have been isolated from a basement membrane tumor (EHS) cDNA library, we measured the vimentin mRNA production in EHS tumor cells in culture, and found that this mRNA is half as abundant as mRNA for type-IV mRNA.

Amino Acid Sequence

An ultra-high sulfur keratin gene is expressed specifically during hair growth.

To study the regulation of the hair cycle in the mouse, we have isolated and characterized a gene for ultra high sulfur keratin that is expressed specifically during the active hair growth cycle. The gene (gUHSK-704Eco) was isolated as a member of a gene cluster on a recombinant phage with a DNA insert of 18 kb that was isolated by screening a murine genomic library at low stringency with a synthetic oligonucleotide derived from a sheep high sulfur keratin gene (Powell, Nucleic Acids Res. 1983 11, 5327). The murine ultra-high sulfur keratin gene has no intervening sequence; the 558 nucleotide of the coding region specify 186 amino acids, of which 70 (37%) are cysteine. A Cys-Cys-Gln-Pro repeat is found 12 times within the coding region. RNA dot blots show that the ultra-high sulfur keratin gene is expressed during the hair cycle concomitant with the anterior-posterior temporal pattern of the normal murine hair cycle.

Amino Acid Sequence

Head-to-head arrangement of murine type IV collagen genes.

The genes for the two dissimilar subunits of type IV collagen are organized in a head-to-head manner with their translation initiation codons within 874 base pairs. Murine genomic clones which contain portions of both genes have been isolated and characterized. These clones contain the first exon of the alpha 1(IV) chain and the first 3 exons for the alpha 2(IV) chain within a 1.7-kilobase HindIII fragment. The intergenic region appears not to resemble previously described bidirectional promoters. The HindIII fragment is present as a single copy in the mouse genome ruling out the presence of one of these gene fragments as a pseudogene. These findings agree with linkage studies of these two genes and differ from the known organization of human fibrillar collagen genes which have been found to be dispersed within the human genome.

Amino Acid Sequence

Identification of cDNA clones encoding different domains of the basement membrane heparan sulfate proteoglycan.

We have used antibodies to the basement membrane proteoglycan to screen lambda gt11 expression vector libraries and have isolated two cDNA clones, termed BPG 5 and BPG 7, which encode different portions of the core protein of the heparan sulfate basement membrane proteoglycan. These clones hybridize to a single mRNA species of approximately 12 kilobases. Amino acid sequences obtained on peptides derived from protease digests of the core protein were found in the deduced sequence, confirming the identity of these clones. BPG 5 spanned 1986 base pairs and has an open reading frame of 662 amino acids. The amino acid sequence deduced from BPG 5 contains two cysteine-rich domains and two internally homologous domains lacking cysteine. The cysteine-rich domains show homology to the cysteine-rich domains of the laminin chains. A globule-rod structure, similar to that of the short arms of the laminin chains, is proposed for this region of the proteoglycan. The other clone, BPG 7, is 2193 base pairs long and has an open reading frame of 731 amino acids. The deduced sequence contains eight internal repeats with 2 cysteine residues in each repeat. These repeats show homology to the neural-cell adhesion molecule N-CAM and the plasma alpha 1B-glycoprotein. Looping structures similar to these proteins and to other proteins of the immunoglobulin gene superfamily are proposed for this region of the proteoglycan. The sequence DSGEY was found four times in this domain and could be heparan sulfate attachment sites.

Amino Acid Sequence

cDNA clones completing the nucleotide and derived amino acid sequence of the alpha 1 chain of basement membrane (type IV) collagen from mouse.

Six cDNA clones add 3549 nucleotides to the DNA sequence of the alpha 1 chain of basement membrane (type IV) collagen. Thus the complete nucleotide and derived amino acid sequence of the alpha 1 type IV collagen with 5007 nucleotides coding for 1669 amino acids with a calculated Mr of 160,827 is known. The six cDNA clones cover the putative N-terminal signal peptide, the 7 S region and two thirds of the helical region extending into the previously published murine nucleotide sequence [(1986) Gene 43, 301]. The protein sequence for 289 amino acids of the helical region adjacent to the 7 S region has not previously been published for any species.

Amino Acid Sequence

cDNA clones coding for the complete murine B chain of complement C1q: nucleotide and derived amino acid sequences.

We have isolated cDNA clones covering the complete B chain of the complement subunit C1q from mouse; this subunit initiates the classical complement pathway. Deoxynucleotide sequence analysis shows that these clones contain 156 nucleotides of the 5' untranslated region, followed by sequences coding for the 25 amino acids of the signal peptide, all of the 228 amino acids of the mature protein and 140 nucleotides of the 3' untranslated region, including a poly A addition signal. The coding region for the mature protein contains 261 nucleotides for the Gly-X-Y repeat and 408 nucleotides for the globular portion of C1q. By comparing the nucleotide sequence of the mouse B chain of C1q with the B chain from human (Reid, K. B. M., 1985, Biochem. J. 231, 729), we find a high homology (80%) within the mature protein, a lower homology within the signal peptide (59%) and the 3' untranslated region (47%) and no homology (26%) in the 5' untranslated region.

Amino Acid Sequence

cDNA clones coding for the complete murine B chain of complement Clq: nucleotide and derived amino acid sequences.

We have isolated cDNA clones covering the complete B chain of the complement subunit Clq from mouse; this subunit initiates the classical complement pathway. Deoxynucleotide sequence analysis shows that these clones contain 156 nucleotides of the 5' untranslated region, followed by sequences coding for the 25 amino acids of the signal peptide; all of the 228 amino acids of the mature protein; and 140 nucleotides of the 3' untranslated region, including a poly A additional signal. The coding region for the mature protein contains 261 nucleotides for the Gly-X-Y repeat and 408 nucleotides for the globular portion of Clq. By comparing the nucleotide sequence of the mouse B chain of Clq with the human B chain (Reid, K.B.M., 1985, Biochem. J. 231, 729), we find a high homology (80%) within the mature protein, a lower homology within the signal peptide (59%) and the 3' untranslated region (47%) and no homology (26%) in the 5' untranslated region.

Amino Acid Sequence

Complete nucleotide sequence of the N-terminal domains of the murine alpha-1 type-III collagen chain.

We present the complete nucleotide (nt) sequence and derived amino acid (aa) sequence of the N-terminal portion of the murine alpha-1 type-III collagen chain. The detailed structure of this region is important for the understanding of type-III collagen biosynthesis in normal tissue and during fibrosis. The cDNA clones, pCIII-1-C119, pCIII-1-C534 and pCIII-1-C572, covering a total of 1485 nt, code for 19 nt of the 5' untranslated region, the 24 aa of the signal peptide, the 130 aa of the N-terminal propeptide, the 9 aa of the telopeptide and 334 aa of the helical domain.

Amino Acid Sequence