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1.
Biologicals ; 48: 82-91, 2017 Jul.
Article de Anglais | MEDLINE | ID: mdl-28554726

RÉSUMÉ

Exendin-4 is a GLP 1 agonist incretin-mimetic peptide hormone comprising 39 amino acids. Exenatide (Byetta®) is a chemically synthesized version of Exendin-4 with an additional C-terminal amidation. Exenatide acts as a GLP-1 receptor agonist. This paper illustrates the method adopted for cloning, fermentation and purification of recombinant Exendin-4 analog expressed in Escherichia coli. The biologically expressed analog was extensively characterized using different orthogonal methods to confirm their biological activity and physicochemical properties. It was observed that the expressed analog showed comparable functional properties as that of Byetta® irrespective of their modes of development. Further, in vivo efficacy of the recombinant Exendin-4 analog was studied in Oral Glucose Tolerance Test (OGTT) in mice models. Byetta® and Exendin-4 analog treated groups showed comparable glucose lowering activity in the OGTT model.


Sujet(s)
Escherichia coli , Expression des gènes , Peptides , Venins , Animaux , Évaluation préclinique de médicament , Exénatide , Mâle , Souris , Peptides/génétique , Peptides/isolement et purification , Peptides/pharmacologie , Protéines recombinantes/biosynthèse , Protéines recombinantes/génétique , Protéines recombinantes/isolement et purification , Protéines recombinantes/pharmacologie , Venins/biosynthèse , Venins/génétique , Venins/isolement et purification , Venins/pharmacologie
2.
J Biol Chem ; 282(14): 10441-8, 2007 Apr 06.
Article de Anglais | MEDLINE | ID: mdl-17264083

RÉSUMÉ

Local zones of easily unwound DNA are characteristic of prokaryotic and eukaryotic replication origins. The DNA-unwinding element of the human c-myc replication origin is essential for replicator activity and is a target of the DNA-unwinding element-binding protein DUE-B in vivo. We present here the 2.0A crystal structure of DUE-B and complementary biochemical characterization of its biological activity. The structure corresponds to a dimer of the N-terminal domain of the full-length protein and contains many of the structural elements of the nucleotide binding fold. A single magnesium ion resides in the putative active site cavity, which could serve to facilitate ATP hydrolytic activity of this protein. The structure also demonstrates a notable similarity to those of tRNA-editing enzymes. Consistent with this structural homology, the N-terminal core of DUE-B is shown to display both D-aminoacyl-tRNA deacylase activity and ATPase activity. We further demonstrate that the C-terminal portion of the enzyme is disordered and not essential for dimerization. However, this region is essential for DNA binding in vitro and becomes ordered in the presence of DNA.


Sujet(s)
Protéines de liaison à l'ADN/composition chimique , Pliage des protéines , Adenosine triphosphatases/composition chimique , Adenosine triphosphatases/métabolisme , Adénosine triphosphate/composition chimique , Adénosine triphosphate/métabolisme , Animaux , Cristallographie aux rayons X , Réplication de l'ADN/physiologie , Protéines de liaison à l'ADN/métabolisme , Dimérisation , Humains , Liaison aux protéines/physiologie , Structure quaternaire des protéines , Structure tertiaire des protéines/physiologie , Protéines proto-oncogènes c-myc/composition chimique , Protéines proto-oncogènes c-myc/métabolisme , Édition des ARN/physiologie , Similitude structurale de protéines , Relation structure-activité
3.
Mol Cell Biol ; 26(14): 5270-83, 2006 Jul.
Article de Anglais | MEDLINE | ID: mdl-16809765

RÉSUMÉ

The binding of the prereplication complex proteins Orc1, Orc2, Mcm3, Mcm7, and Cdc6 and the novel DNA unwinding element (DUE) binding protein DUE-B to the endogenous human c-myc replicator was studied by chromatin immunoprecipitation. In G(1)-arrested HeLa cells, Mcm3, Mcm7, and DUE-B were prominent near the DUE, while Orc1 and Orc2 were least abundant near the DUE and more abundant at flanking sites. Cdc6 binding mirrored that of Orc2 in G(1)-arrested cells but decreased in asynchronous or M-phase cells. Similarly, the signals from Orc1, Mcm3, and Mcm7 were at background levels in cells arrested in M phase, whereas Orc2 retained the distribution seen in G(1)-phase cells. Previously shown to cause histone hyperacetylation and delocalization of replication initiation, trichostatin A treatment of cells led to a parallel qualitative change in the distribution of Mcm3, but not Orc2, across the c-myc replicator. Orc2, Mcm3, and DUE-B were also bound at an ectopic c-myc replicator, where deletion of sequences essential for origin activity was associated with the loss of DUE-B binding or the alteration of chromatin structure and loss of Mcm3 binding. These results show that proteins implicated in replication initiation are selectively and differentially bound across the c-myc replicator, dependent on discrete structural elements in DNA or chromatin.


Sujet(s)
Réplication de l'ADN/génétique , Réplication de l'ADN/physiologie , Gènes myc , Séquence nucléotidique , Sites de fixation/génétique , Protéines du cycle cellulaire/métabolisme , Chromatine/génétique , Chromatine/métabolisme , ADN/génétique , ADN/métabolisme , Protéines de liaison à l'ADN/génétique , Protéines de liaison à l'ADN/métabolisme , Phase G1 , Cellules HeLa , Humains , Composant-3 du complexe de maintenance des minichromosomes , Composant-7 du complexe de maintenance des minichromosomes , Protéines nucléaires/métabolisme , Complexe ORC/métabolisme , Liaison aux protéines , Réplicon , Délétion de séquence
4.
Nucleic Acids Res ; 33(1): 325-36, 2005.
Article de Anglais | MEDLINE | ID: mdl-15653633

RÉSUMÉ

Eukaryotic chromatin structure limits the initiation of DNA replication spatially to chromosomal origin zones and temporally to the ordered firing of origins during S phase. Here, we show that the level of histone H4 acetylation correlates with the frequency of replication initiation as measured by the abundance of short nascent DNA strands within the human c-myc and lamin B2 origins, but less well with the frequency of initiation across the beta-globin locus. Treatment of HeLa cells with trichostatin A (TSA) reversibly increased the acetylation level of histone H4 globally and at these initiation sites. At all three origins, TSA treatment transiently promoted a more dispersive pattern of initiations, decreasing the abundance of nascent DNA at previously preferred initiation sites while increasing the nascent strand abundance at lower frequency genomic initiation sites. When cells arrested in late G1 were released into TSA, they completed S phase more rapidly than untreated cells, possibly due to the earlier initiation from late-firing origins, as exemplified by the beta-globin origin. Thus, TSA may modulate replication origin activity through its effects on chromatin structure, by changing the selection of initiation sites, and by advancing the time at which DNA synthesis can begin at some initiation sites.


Sujet(s)
Réplication de l'ADN/effets des médicaments et des substances chimiques , Antienzymes/pharmacologie , Inhibiteurs de désacétylase d'histone , Acides hydroxamiques/pharmacologie , Origine de réplication , Acétylation , Cycle cellulaire/effets des médicaments et des substances chimiques , Chromatine/composition chimique , Cellules HeLa , Histone/métabolisme , Humains
5.
J Biol Chem ; 280(13): 13071-83, 2005 Apr 01.
Article de Anglais | MEDLINE | ID: mdl-15653697

RÉSUMÉ

The presence of DNA-unwinding elements (DUEs) at eukaryotic replicators has raised the question of whether these elements contribute to origin activity by their intrinsic helical instability, as protein-binding sites, or both. We used the human c-myc DUE as bait in a yeast one-hybrid screen and identified a DUE-binding protein, designated DUE-B, with a predicted mass of 23.4 kDa. Based on homology to yeast proteins, DUE-B was previously classified as an aminoacyl-tRNA synthetase; however, the human protein is approximately 60 amino acids longer than its orthologs in yeast and worms and is primarily nuclear. In vivo, chromatin-bound DUE-B localized to the c-myc DUE region. DUE-B levels were constant during the cell cycle, although the protein was preferentially phosphorylated in cells arrested early in S phase. Inhibition of DUE-B protein expression slowed HeLa cell cycle progression from G1 to S phase and induced cell death. DUE-B extracted from HeLa cells or expressed from baculovirus migrated as a dimer during gel filtration and co-purified with ATPase activity. In contrast to endogenous DUE-B, baculovirus-expressed DUE-B efficiently formed high molecular mass complexes in Xenopus egg and HeLa extracts. In Xenopus extracts, baculovirus-expressed DUE-B inhibited chromatin replication and replication protein A loading in the presence of endogenous DUE-B, suggesting that differential covalent modification of these proteins can alter their effect on replication. Recombinant DUE-B expressed in HeLa cells restored replication activity to egg extracts immunodepleted with anti-DUE-B antibody, suggesting that DUE-B plays an important role in replication in vivo.


Sujet(s)
Réplication de l'ADN , Protéines de liaison à l'ADN/physiologie , Protéines proto-oncogènes c-myc/métabolisme , Amino acyl-tRNA synthetases/métabolisme , Animaux , Séquence nucléotidique , Technique de Northern , Cycle cellulaire , Lignée cellulaire , Noyau de la cellule/métabolisme , Chromatine/métabolisme , Immunoprécipitation de la chromatine , Chromatographie , Chromatographie sur gel , Réactifs réticulants/pharmacologie , ADN/métabolisme , Amorces ADN/composition chimique , Protéines de liaison à l'ADN/composition chimique , Embryon de mammifère/métabolisme , Embryon non mammalien , Test ELISA , Extinction de l'expression des gènes , Cellules HeLa , Humains , Immunotransfert , Insectes , Données de séquences moléculaires , Phosphorylation , Liaison aux protéines , Structure tertiaire des protéines , ARN/métabolisme , Interférence par ARN , Protéines recombinantes/composition chimique , Phase S , Similitude de séquences d'acides aminés , Spécificité d'espèce , Techniques de double hybride , Xenopus
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