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1.
PLoS One ; 10(6): e0130699, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26107496

RESUMO

Large-scale production of fully human IgG (hIgG) or human polyclonal antibodies (hpAbs) by transgenic animals could be useful for human therapy. However, production level of hpAbs in transgenic animals is generally very low, probably due to the fact that evolutionarily unique interspecies-incompatible genomic sequences between human and non-human host species may impede high production of fully hIgG in the non-human environment. To address this issue, we performed species-specific human artificial chromosome (HAC) engineering and tested these engineered HAC in cattle. Our previous study has demonstrated that site-specific genomic chimerization of pre-B cell receptor/B cell receptor (pre-BCR/BCR) components on HAC vectors significantly improves human IgG expression in cattle where the endogenous bovine immunoglobulin genes were knocked out. In this report, hIgG1 class switch regulatory elements were subjected to site-specific genomic chimerization on HAC vectors to further enhance hIgG expression and improve hIgG subclass distribution in cattle. These species-specific modifications in a chromosome scale resulted in much higher production levels of fully hIgG of up to 15 g/L in sera or plasma, the highest ever reported for a transgenic animal system. Transchromosomic (Tc) cattle containing engineered HAC vectors generated hpAbs with high titers against human-origin antigens following immunization. This study clearly demonstrates that species-specific sequence differences in pre-BCR/BCR components and IgG1 class switch regulatory elements between human and bovine are indeed functionally distinct across the two species, and therefore, are responsible for low production of fully hIgG in our early versions of Tc cattle. The high production levels of fully hIgG with hIgG1 subclass dominancy in a large farm animal species achieved here is an important milestone towards broad therapeutic applications of hpAbs.


Assuntos
Anticorpos Monoclonais Humanizados/biossíntese , Anticorpos Monoclonais/biossíntese , Cromossomos Artificiais Humanos/imunologia , Vetores Genéticos/metabolismo , Imunoglobulina G/biossíntese , Receptores de Células Precursoras de Linfócitos B/imunologia , Animais , Animais Geneticamente Modificados , Anticorpos Monoclonais/genética , Anticorpos Monoclonais/imunologia , Anticorpos Monoclonais Humanizados/genética , Anticorpos Monoclonais Humanizados/imunologia , Antígenos/química , Antígenos/imunologia , Bovinos , Linhagem Celular Tumoral , Galinhas , Mapeamento Cromossômico , Cromossomos Artificiais Humanos/química , Técnicas de Inativação de Genes , Engenharia Genética , Vetores Genéticos/química , Humanos , Imunização , Imunoglobulina G/genética , Imunoglobulina G/imunologia , Linfócitos/citologia , Linfócitos/imunologia , Receptores de Células Precursoras de Linfócitos B/genética , Especificidade da Espécie
2.
PLoS One ; 9(3): e90383, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24603704

RESUMO

Towards the goal of producing fully human polyclonal antibodies (hpAbs or hIgGs) in transchromosomic (Tc) cattle, we previously reported that Tc cattle carrying a human artificial chromosome (HAC) comprising the entire unrearranged human immunoglobulin (Ig) heavy-chain (hIGH), kappa-chain (hIGK), and lambda-chain (hIGL) germline loci produced physiological levels of hIgGs when both of the bovine immunoglobulin mu heavy-chains, bIGHM and bIGHML1, were homozygously inactivated (bIGHM-/-, bIGHML1-/-; double knockouts or DKO). However, because endogenous bovine immunoglobulin light chain loci are still intact, the light chains are produced both from the hIGK and hIGL genomic loci on the HAC and from the endogenous bovine kappa-chain (bIGK) and lambda-chain (bIGL) genomic loci, resulting in the production of fully hIgGs (both Ig heavy-chains and light-chains are of human origin: hIgG/hIgκ or hIgG/hIgλ) and chimeric hIgGs (Ig heavy-chains are of human origin while the Ig light-chains are of bovine origin: hIgG/bIgκ or hIgG/bIgλ). To improve fully hIgG production in Tc cattle, we here report the deletion of the entire bIGL joining (J) and constant (C) gene cluster (bIGLJ1-IGLC1 to bIGLJ5-IGLC5) by employing Cre/loxP mediated site-specific chromosome recombination and the production of triple knockout (bIGHM-/-, bIGHML1-/- and bIGL-/-; TKO) Tc cattle. We further demonstrate that bIGL cluster deletion greatly improves fully hIgGs production in the sera of TKO Tc cattle, with 51.3% fully hIgGs (hIgG/hIgκ plus hIgG/hIgλ).


Assuntos
Anticorpos Monoclonais/imunologia , Cromossomos Artificiais Humanos/genética , Técnicas de Inativação de Genes , Imunoglobulinas/genética , Imunoglobulinas/imunologia , Animais , Animais Recém-Nascidos , Linfócitos B/imunologia , Linfócitos B/metabolismo , Sequência de Bases , Células CHO , Bovinos , Linhagem Celular , Cricetinae , Cricetulus , Feminino , Citometria de Fluxo , Humanos , Imunoglobulina G/genética , Imunoglobulina G/imunologia , Cadeias Pesadas de Imunoglobulinas/genética , Cadeias Pesadas de Imunoglobulinas/imunologia , Cadeias kappa de Imunoglobulina/genética , Cadeias kappa de Imunoglobulina/imunologia , Cadeias lambda de Imunoglobulina/genética , Cadeias lambda de Imunoglobulina/imunologia , Cadeias mu de Imunoglobulina/genética , Cadeias mu de Imunoglobulina/imunologia , Masculino , Dados de Sequência Molecular , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Homologia de Sequência do Ácido Nucleico
3.
PLoS One ; 8(10): e78119, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-24205120

RESUMO

Therapeutic human polyclonal antibodies (hpAbs) derived from pooled plasma from human donors are Food and Drug Administration approved biologics used in the treatment of a variety of human diseases. Powered by the natural diversity of immune response, hpAbs are effective in treating diseases caused by complex or quickly-evolving antigens such as viruses. We previously showed that transchromosomic (Tc) cattle carrying a human artificial chromosome (HAC) comprising the entire unrearranged human immunoglobulin heavy-chain (hIGH) and kappa-chain (hIGK) germline loci (named as κHAC) are capable of producing functional hpAbs when both of the bovine immunoglobulin mu heavy-chains, bIGHM and bIGHML1, are homozygously inactivated (double knockouts or DKO). However, B lymphocyte development in these Tc cattle is compromised, and the overall production of hpAbs is low. Here, we report the construction of an improved HAC, designated as cKSL-HACΔ, by incorporating all of the human immunoglobulin germline loci into the HAC. Furthermore, for avoiding the possible human-bovine interspecies incompatibility between the human immunoglobulin mu chain protein (hIgM) and bovine transmembrane α and ß immunoglobulins (bIgα and bIgß) in the pre-B cell receptor (pre-BCR) complex, we partially replaced (bovinized) the hIgM constant domain with the counterpart of bovine IgM (bIgM) that is involved in the interaction between bIgM and bIgα/Igß; human IgM bovinization would also improve the functionality of hIgM in supporting B cell activation and proliferation. We also report the successful production of DKO Tc cattle carrying the cKSL-HACΔ (cKSL-HACΔ/DKO), the dramatic improvement of B cell development in these cattle and the high level production of hpAbs (as measured for the human IgG isotype) in the plasma. We further demonstrate that, upon immunization by tumor immunogens, high titer tumor immunogen-specific human IgG (hIgG) can be produced from such Tc cattle.


Assuntos
Imunoglobulinas/metabolismo , Animais , Linfócitos B/metabolismo , Bovinos , Proliferação de Células , Cromossomos Artificiais Humanos/genética , Cromossomos Artificiais Humanos/imunologia , Cromossomos Artificiais Humanos/metabolismo , Humanos , Imunoglobulina G/genética , Imunoglobulina G/imunologia , Imunoglobulina G/metabolismo , Cadeias Pesadas de Imunoglobulinas/genética , Cadeias Pesadas de Imunoglobulinas/imunologia , Cadeias Pesadas de Imunoglobulinas/metabolismo , Imunoglobulina M/genética , Imunoglobulina M/imunologia , Imunoglobulina M/metabolismo , Cadeias mu de Imunoglobulina/genética , Cadeias mu de Imunoglobulina/imunologia , Cadeias mu de Imunoglobulina/metabolismo , Imunoglobulinas/genética , Imunoglobulinas/imunologia
4.
Hum Mol Genet ; 22(3): 578-92, 2013 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-23125282

RESUMO

Human CYP3A is the most abundant P450 isozyme present in the human liver and small intestine, and metabolizes around 50% of medical drugs on the market. The human CYP3A subfamily comprises four members (CYP3A4, CYP3A5, CYP3A7, CYP3A43) encoded on human chromosome 7. However, transgenic mouse lines carrying the entire human CYP3A cluster have not been constructed because of limitations in conventional cloning techniques. Here, we show that the introduction of a human artificial chromosome (HAC) containing the entire genomic human CYP3A locus recapitulates tissue- and stage-specific expression of human CYP3A genes and xenobiotic metabolism in mice. About 700 kb of the entire CYP3A genomic segment was cloned into a HAC (CYP3A-HAC), and trans-chromosomic (Tc) mice carrying a single copy of germline-transmittable CYP3A-HAC were generated via a chromosome-engineering technique. The tissue- and stage-specific expression profiles of CYP3A genes were consistent with those seen in humans. We further generated mice carrying the CYP3A-HAC in the background homozygous for targeted deletion of most endogenous Cyp3a genes. In this mouse strain with 'fully humanized' CYP3A genes, the kinetics of triazolam metabolism, CYP3A-mediated mechanism-based inactivation effects and formation of fetal-specific metabolites of dehydroepiandrosterone observed in humans were well reproduced. Thus, these mice are likely to be valuable in evaluating novel drugs metabolized by CYP3A enzymes and in studying the regulation of human CYP3A gene expression. Furthermore, this system can also be used for generating Tc mice carrying other human metabolic genes.


Assuntos
Cromossomos Artificiais Humanos , Citocromo P-450 CYP3A/genética , Regulação Enzimológica da Expressão Gênica , Triazolam/farmacocinética , Xenobióticos/metabolismo , Animais , Hidrocarboneto de Aril Hidroxilases/genética , Hidrocarboneto de Aril Hidroxilases/metabolismo , Southern Blotting , Células CHO , Linhagem Celular , Cromossomos Humanos Par 7 , Clonagem Molecular , Cricetinae , Citocromo P-450 CYP3A/metabolismo , Desidroepiandrosterona/metabolismo , Feminino , Loci Gênicos , Humanos , Inativação Metabólica , Intestinos/enzimologia , Fígado/enzimologia , Camundongos , Camundongos Endogâmicos ICR , Camundongos Transgênicos , Microssomos/metabolismo , Família Multigênica
5.
Genome Integr ; 2(1): 6, 2011 May 23.
Artigo em Inglês | MEDLINE | ID: mdl-21605421

RESUMO

BACKGROUND: Transgenic cattle carrying multiple genomic modifications have been produced by serial rounds of somatic cell chromatin transfer (cloning) of sequentially genetically targeted somatic cells. However, cloning efficiency tends to decline with the increase of rounds of cloning. It is possible that multiple rounds of cloning compromise the genome integrity or/and introduce epigenetic errors in the resulting cell lines, rendering a decline in cloning. To test these possibilities, we performed 9 high density array Comparative Genomic Hybridization (CGH) experiments to test the genome integrity in 3 independent bovine transgenic cell lineages generated from genetic modification and cloning. Our plan included the control hybridizations (self to self) of the 3 founder cell lines and 6 comparative hybridizations between these founders and their derived cell lines with either high or low cloning efficiencies. RESULTS: We detected similar amounts of differences between the control hybridizations (8, 13 and 39 differences) and the comparative analyses of both "high" and "low" cell lines (ranging from 7 to 57 with a mean of ~20). Almost 75% of the large differences (>10 kb) and about 45% of all differences shared the same type (loss or gain) and were located in nearby genomic regions across hybridizations. Therefore, it is likely that they were not true differences but caused by systematic factors associated with local genomic features (e.g. GC contents). CONCLUSIONS: Our findings reveal that large copy number variations are less likely to arise during genetic targeting and serial rounds of cloning, fortifying the notion that epigenetic errors introduced from serial cloning may be responsible for the cloning efficiency decline.

6.
Nat Biotechnol ; 27(2): 173-81, 2009 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-19151699

RESUMO

Antigen-specific human polyclonal antibodies (hpAbs), produced by hyperimmunization, could be useful for treating many human diseases. However, yields from available transgenic mice and transchromosomic (Tc) cattle carrying human immunoglobulin loci are too low for therapeutic applications. We report a Tc bovine system that produces large yields of hpAbs. Tc cattle were generated by transferring a human artificial chromosome vector carrying the entire unrearranged, human immunoglobulin heavy (hIGH) and kappa-light (hIGK) chain loci to bovine fibroblasts in which two endogenous bovine IgH chain loci were inactivated. Plasma from the oldest animal contained >2 g/l of hIgG, paired with either human kappa-light chain (up to approximately 650 microg/ml, fully human) or with bovine kappa- or lambda-light chain (chimeric), with a normal hIgG subclass distribution. Hyperimmunization with anthrax protective antigen triggered a hIgG-mediated humoral immune response comprising a high proportion of antigen-specific hIgG. Purified, fully human and chimeric hIgGs were highly active in an in vitro toxin neutralization assay and protective in an in vivo mouse challenge assay.


Assuntos
Animais Geneticamente Modificados , Imunoglobulina G/biossíntese , Cadeias Pesadas de Imunoglobulinas/biossíntese , Cadeias kappa de Imunoglobulina/biossíntese , Animais , Antígenos de Bactérias/imunologia , Toxinas Bacterianas/imunologia , Células CHO , Bovinos/genética , Cromossomos Artificiais Humanos/genética , Cricetinae , Cricetulus , Técnicas de Inativação de Genes , Glicosilação , Humanos , Imunoglobulina G/genética , Imunoglobulina G/imunologia , Cadeias Pesadas de Imunoglobulinas/genética , Cadeias Pesadas de Imunoglobulinas/imunologia , Cadeias kappa de Imunoglobulina/genética , Cadeias kappa de Imunoglobulina/imunologia , Camundongos , Testes de Neutralização , Proteínas Recombinantes de Fusão/genética , Proteínas Recombinantes de Fusão/metabolismo
7.
Nat Biotechnol ; 25(1): 132-8, 2007 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-17195841

RESUMO

Prion diseases are caused by propagation of misfolded forms of the normal cellular prion protein PrP(C), such as PrP(BSE) in bovine spongiform encephalopathy (BSE) in cattle and PrP(CJD) in Creutzfeldt-Jakob disease (CJD) in humans. Disruption of PrP(C) expression in mice, a species that does not naturally contract prion diseases, results in no apparent developmental abnormalities. However, the impact of ablating PrP(C) function in natural host species of prion diseases is unknown. Here we report the generation and characterization of PrP(C)-deficient cattle produced by a sequential gene-targeting system. At over 20 months of age, the cattle are clinically, physiologically, histopathologically, immunologically and reproductively normal. Brain tissue homogenates are resistant to prion propagation in vitro as assessed by protein misfolding cyclic amplification. PrP(C)-deficient cattle may be a useful model for prion research and could provide industrial bovine products free of prion proteins.


Assuntos
Animais Geneticamente Modificados/genética , Inativação Gênica , Engenharia Genética/métodos , Proteínas PrPC/genética , Animais , Bovinos
8.
Nat Genet ; 36(7): 775-80, 2004 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-15184897

RESUMO

Gene targeting is accomplished using embryonic stem cells in the mouse but has been successful, only using primary somatic cells followed by embryonic cloning, in other species. Gene targeting in somatic cells versus embryonic stem cells is a challenge; consequently, there are few reported successes and none include the targeting of transcriptionally silent genes or double targeting to produce homozygotes. Here, we report a sequential gene targeting system for primary fibroblast cells that we used to knock out both alleles of a silent gene, the bovine gene encoding immunoglobulin-mu (IGHM), and produce both heterozygous and homozygous knockout calves. We also carried out sequential knockout targeting of both alleles of a gene that is active in fibroblasts, encoding the bovine prion protein (PRNP), in the same genetic line to produce doubly homozygous knockout fetuses. The sequential gene targeting system we used alleviates the need for germline transmission for complex genetic modifications and should be broadly applicable to gene functional analysis and to biomedical and agricultural applications.


Assuntos
Marcação de Genes , Cadeias mu de Imunoglobulina/genética , Príons/genética , Alelos , Animais , Bovinos
10.
Nat Biotechnol ; 20(9): 889-94, 2002 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-12172556

RESUMO

Human polyclonal antibodies (hPABs) are useful therapeutics, but because they are available only from human donors, their supply and application is limited. To address this need, we prepared a human artificial chromosome (HAC) vector containing the entire unrearranged sequences of the human immunoglobulin (hIg) heavy-chain (H) and lambda (lambda) light-chain loci. The HAC vector was introduced into bovine primary fetal fibroblasts using a microcell-mediated chromosome transfer (MMCT) approach. Primary selection was carried out, and the cells were used to produce cloned bovine fetuses. Secondary selection was done on the regenerated fetal cell lines, which were then used to produce four healthy transchromosomic (Tc) calves. The HAC was retained at a high rate (78-100% of cells) in calves and the hIg loci underwent rearrangement and expressed diversified transcripts. Human immunoglobulin proteins were detected in the blood of newborn calves. The production of Tc calves is an important step in the development of a system for producing therapeutic hPABs.


Assuntos
Bovinos/genética , Cromossomos Artificiais Humanos , Clonagem Molecular/métodos , Genes de Imunoglobulinas/genética , Vetores Genéticos , Imunoglobulina G/sangue , Imunoglobulina G/genética , Animais , Animais Geneticamente Modificados , Expressão Gênica , Regulação da Expressão Gênica , Técnicas de Transferência de Genes , Humanos , Imunoglobulina G/biossíntese , Cadeias Pesadas de Imunoglobulinas/genética , Cadeias lambda de Imunoglobulina/genética , Transgenes
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