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G Vogeli

Publications and source records attributed to G Vogeli.

At least 37 records · Page 2Linked to original sources

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↗

Homologies between the non-collagenous C-terminal (NC1) globular domains of the alpha 1 and alpha 2 subunits of type-IV collagen.

The non-collagenous C-terminal globular domain (NC1) of type-IV collagen has the dual role of initiating triple-helix formation among the subunits and of crosslinking two collagen molecules during basement-membrane meshwork formation. By cloning a cDNA for the NC1 domain of the alpha 2(IV) collagen chain, we have found a high degree of homology (63% for nucleotides, 66% for amino acids) between the NC1 of the alpha 2 and alpha 1 chains of type-IV collagen. All cysteine residues are conserved. This high degree of homology is not found within the helical portion where the homology is 41% for amino acids (only 14% if the obligatory glycine is not used for this analysis). We propose that this high degree of homology within the non-collagenous domain indicates a close evolutionary relationship maintained by functional restraints between the two chains of type IV collagen.

Amino Acid Sequence↗

Proposed alignment of helical interruptions in the two subunits of the basement membrane (type IV) collagen.

We have isolated a cDNA clone for part of the alpha 2 type IV collagen (pCIV-2-176). Deoxynucleotide sequence analysis shows that this clone codes for 439 amino acids from the helical domain adjacent to the C-terminal globular domain of the alpha 2 (IV) chain. By aligning the deduced amino acid sequence of the alpha 2 (IV) chain with the published sequence for the alpha 1 (IV) chain, we find that all interruptions in the alpha 1 (IV) chain coincide with an interruption in the alpha 2 (IV) chain. Additional interruptions in the alpha 2 (IV) chain exist, however, three out of the four analysed only slightly disturb the collagen triple helix.

Amino Acid Sequence↗

Isolation of an alpha 1 type-IV collagen cDNA clone using a synthetic oligodeoxynucleotide.

We have isolated a cDNA clone (pCIV-1-225) for the alpha 1 subunit of basement membrane (type IV) collagen from a cDNA library made from Engelbreth-Holm-Swarm mouse tumor RNA. The cDNA library was screened with synthetic oligodeoxynucleotides derived from published amino acid (aa) sequences (Schuppan et al., 1982). Nucleotide sequence data established the identity of our cDNA clone to encode an alpha 1 type IV collagen. This clone contains 270 aa of the helical region and has three interruptions in the Gly-X-Y repeat unit.

Amino Acid Sequence↗

Structure and developmentally regulated expression of a Strongylocentrotus purpuratus collagen gene.

We have isolated and partially characterized an ca. 20-kilobase-pair Strongylocentrotus purpuratus genomic clone, using a mouse alpha 1 (type IV) collagen cDNA probe. A 1-kilobase-pair HindIII fragment of the clone hybridizes strongly to the probe; this has been subcloned and sequenced. It contains 212 base pairs of sequence coding for (Gly-Xaa-Yaa)n (where Xaa and Yaa are different unspecified amino acids), characteristic of all known collagen genes. There is a single point of discontinuity within the repeating pattern in this exon, similar to the genomic structure of mouse type IV collagen. The (Gly-Xaa-Yaa)n-encoding element is flanked by consensus splicing sequences, and the intervening sequences on either side of it have multiple in-phase termination codons. Electron microscopy of R loops between the phage lambda recombinant clone and poly(A)+ RNA reveals multiple short exons, a feature also seen in vertebrate collagen genes. The (Gly-Xaa-Yaa)n protein-encoding sequence hybridizes to a developmentally regulated 9-kilobase mRNA; the message appears during the morula stage, rises sharply in abundance at the blastula stage, and decreases in proportion to total RNA later in development.

Animals↗

Amino acid sequence of the non-collagenous globular domain (NC1) of the alpha 1(IV) chain of basement membrane collagen as derived from complementary DNA.

NC1, the C-terminal non-collagenous globular domain of collagen IV, represents one of the two end regions responsible for the assembly and cross-linking of the extracellular network of basement membrane collagen. Several cDNA clones for the NC1 domain of the alpha 1(IV) collagen chain of mouse have been isolated by using synthetic oligonucleotides as screening probes for mouse libraries. The oligonucleotides were synthesized according to known stretches of the corresponding protein sequence. Sequencing of the overlapping cDNA clones allowed the complete amino acid sequence of the NC1 domain to be deduced as well as the C-terminal 165 amino acid residues of the triple helix. It consists of 229 amino acid residues which comprise two homologous regions with a high content of cysteine. These DNA and protein sequences are compared to the corresponding sequences of other collagens and discussed with respect to their structural and biological significance.

Amino Acid Sequence↗

Recombinant DNA techniques: storage and screening of cDNA libraries with large numbers of individual colonies from initial transformations.

A typical cDNA library with a large number of initial transformants, plated in soft agarose, can be stored and shipped in 12% glycerol at -70 degrees C. To prepare the library for storage, the soft agarose layer is made into a paste and the agarose is removed by Sephadex G-25 filtration. This method of cDNA library storage does not alter the relative representation of the plasmids carried in the library. To achieve a very uniform distribution of colonies at high colony density, an aliquot of the cDNA library is diluted to 3000 to 10,000 colonies/ml. One milliliter of this suspension is evenly distributed on a nitrocellulose filter on an agar plate and air-dried. Filter copies are made and screened by published methods.

Cloning, Molecular↗

Isolation of cDNA and genomic DNA clones encoding type II collagen.

A cDNA library constructed from total chick embryo RNA was screened with an enriched fraction of type II collagen mRNA. Two overlapping cDNA clones were characterized and shown to encode the COOH propeptide of type II collagen. In addition, a type II collagen clone was isolated from a Charon 4A library of chick genomic fragments. Definitive identification of the clones was based on DNA sequence analysis. The 3' end of the type II collagen gene appears to be similar to that of other interstitial collagen genes. Northern hybridization data indicates that there is a marked decrease in type II collagen mRNA levels in chondrocytes treated with the dedifferentiating agent 5-bromodeoxyuridine. The major type II collagen mRNA species is 5300 bases long, similar to that of other interstitial collagen RNAs.

Amino Acid Sequence↗

Accurate in vitro transcriptional initiation of the chick alpha 2 (Type I) collagen gene.

Chick genomic DNA containing the extreme 5' end of the alpha 2 (type I) collagen gene has been used as template in an in vitro HeLa cell transcription system. RNA polymerase II-dependent transcription initiates from a specific site on this DNA. The precise location of this site was determined by three types of experiments: sizing of in vitro-synthesized RNA runoff transcripts, comparing the sequence of the in vitro-made RNA transcripts with the structure of the DNA template, and identifying the first and second nucleotides of the in vitro-synthesized transcripts. Transcription was found to initiate 33 base pairs downstream from a canonical Goldberg-Hogness sequence (TATAAATA). This in vitro start site is the same as the initiation site of in vivo-synthesized collagen RNA.

Animals↗

Decrease in the levels of nuclear RNA precursors for alpha 2 collagen in Rous sarcoma virus transformed fibroblasts.

We have examined the levels of type I alpha 2 collagen RNA precursors, containing both intron and exon sequences in nuclear RNA preparations of chick embryo fibroblasts (CEF) and of CEF transformed by the Schmidt-Rupin strain of Rous sarcoma virus (RSV). We have used two different fragments of chick alpha 2 collagen genomic DNA as hybridization probes in S1 mapping experiments. Each of these DNA probes contains an entire intron. Our results indicate that the levels of the primary transcript of alpha 2 collagen RNA are much lower in RSV-CEF than in CEF. They suggest, but do not prove that the effect of the transforming protein p60src on the synthesis of alpha 2 collagen is mediated by a transcriptional control mechanism.

Animals↗

Structure of the promoter for chicken alpha 2 type I collagen gene.

The chicken alpha 2 type I collagen gene is 38 kilobases long and its coding information is subdivided into more than 50 exons. In the current study, we used primer extension and S1 nuclease mapping to determine the sequence of the 5' end of alpha 2 collagen mRNA and to locate the start site for transcription of the alpha 2 collagen gene. The DNA sequence around the start site for transcription shows a typical Goldberg-Hogness sequence, 5' T-A-T-A-A-A-T 3', between -33 and -26 and a 5' G-C-C-C-A-T-T 3' sequence ("CAT" box) between -84 and -78. Three AUGs are found in the initial portion of the mRNA, the first from +54 to +56, the second from +117 to +119, and the third from +134 to +136. The first two AUGs are followed by short coding sequences that could specify a hexapeptide a tetrapeptide, respectively. Only the third AUG is followed by an open reading frame coding for a sequence that presents considerable homology with the previously determined amino acid sequence of prepro alpha 1 collagen. In the promoter region sequence there are several extensive dyads of symmetry. Three of these inverted repeats which precede the start site for transcription overlap each other and may have a role in the developmental regulation of this gene.

Animals↗