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Targeted disruption of the TGA3 locus in Arabidopsis thaliana 总被引:7,自引:3,他引:7
A major drawback to study gene functions in plant systems is the lack of an effective gene knockout strategy. With a large number of plant genes isolated and the accelerating pace by which this collection is growing, the need for their functional analyses at the whole plant level has become increasingly urgent. Here evidence is reported for the first successful disruption of a non-selectable gene in Arabidopsis thaliana by creating a mutant of the TGA3 locus via targeted insertion of the bacterial neo gene conferring kanamycin (Km) resistance. A β-glucuronidase (GUS) expression unit outside the region of homology was used as a screenable marker to distinguish homologous recombination events from those of ectopic insertions. PCR amplification coupled with Southern blot screening identified two putative homologous recombination events among 2580 Kmr calli. One callus line was subsequently isolated and the structure of the targeted TGA3 allele confirmed by Southern blot analyses. This study demonstrates the feasibility of targeting a non-selectable locus in Arabidopsis. Combined with future improvements in negative selection strategies and efficient, transformation methodologies, gene replacement studies in plants could become a routine technique. 相似文献
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L K Clayton A C Diener A Lerner A G Tse S Koyasu E L Reinherz 《The Journal of biological chemistry》1992,267(36):26023-26030
The T-cell receptor (TCR) is a multisubunit complex consisting of the clonotypic Ti alpha and beta (or Ti gamma and delta) subunits and the invariant CD3 gamma, CD3 delta, CD3 epsilon, CD3 zeta, and CD3 eta subunits. Herein, we describe an additional product from the CD3 zeta/eta gene locus which we have termed CD3 theta. The cDNA derives from the first seven exons common to CD3 zeta and CD3 eta, 94 base pairs (bp) of the CD3 eta-specific exon 9 and an additional exon 10 encoding the carboxyl-terminal 15 amino acids and the 3'-untranslated region. The expression of CD3 theta is equivalent to that of CD3 eta in tissue distribution and level of expression as judged by RNase protection analysis. Despite the identity of the amino-terminal 121 amino acids of CD3 zeta, CD3 eta, and CD3 theta and an additional 31 amino acids shared between CD3 eta and CD3 theta, transfection of CD3 theta into the CD3 zeta- eta- T-cell hybridoma, MA5.8, failed to restore detectable surface TCR expression in contrast to transfection with CD3 zeta or CD3 eta. Analysis of the CD3 theta protein in transfectants indicated that CD3 theta is associated with the TCR intracellularly. However, unlike with CD3 zeta, Ti alpha-beta chains remain endoglycosidase H sensitive, suggesting a role for the unique COOH-terminal segment of CD3 theta in mediating TCR retention and/or degradation in a pre-Golgi compartment. 相似文献
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The bacterial ArsA ATPase is the catalytic component of an oxyanion pump that is responsible for resistance to arsenicals and antimonials. Homologues of the bacterial ArsA ATPase are widespread in nature. We had earlier identified the mouse homologue (Asna1) that exhibits 27% identity to the bacterial ArsA ATPase. To identify the physiological role of the protein, heterozygous Asna1 knockout mice (Asna1+/-) were generated by homologous recombination. The Asna1+/- mice displayed similar phenotype as the wild-type mice. However, early embryonic lethality was observed in homozygous Asna1 knockout embryos, between E3.5 (E=embryonic day) and E8.5 stage. These findings indicate that Asna1 plays a crucial role during early embryonic development. 相似文献
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Hilke B.V.K. Vervenne Koen R.M.O. Crombez Veerle Janssens Marleen M.R. Petit 《Biochemical and biophysical research communications》2009,379(2):368-421
LPP (Lipoma Preferred Partner) is a zyxin-related cell adhesion protein that is involved in the regulation of cell migration. We generated mice with a targeted disruption of the Lpp gene and analysed the importance of Lpp for embryonic development and adult functions. Aberrant Mendelian inheritance in heterozygous crosses suggested partial embryonic lethality of Lpp−/− females. Fertility of Lpp−/− males was proven to be normal, however, females from Lpp−/− × Lpp−/− crosses produced a strongly reduced number of offspring, probably due to a combination of female embryonic lethality and aberrant pregnancies. Apart from these developmental and reproductive abnormalities, Lpp−/− mice that were born reached adulthood without displaying any additional macroscopic defects. On the other hand, Lpp−/− mouse embryonic fibroblasts exhibited reduced migration capacity, reduced viability, and reduced expression of some Lpp interaction partners. Finally, we discovered a short nuclear form of Lpp, expressed mainly in testis via an alternative promoter. 相似文献
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J. Ramsoondar M. Mendicino C. Phelps T. Vaught S. Ball J. Monahan S. Chen A. Dandro J. Boone P. Jobst A. Vance N. Wertz I. Polejaeva J. Butler Y. Dai D. Ayares K. Wells 《Transgenic research》2011,20(3):643-653
Inactivation of the endogenous pig immunoglobulin (Ig) loci, and replacement with their human counterparts, would produce animals that could alleviate both the supply and specificity issues of therapeutic human polyclonal antibodies (PAbs). Platform genetics are being developed in pigs that have all endogenous Ig loci inactivated and replaced by human counterparts, in order to address this unmet clinical need. This report describes the deletion of the porcine kappa (??) light chain constant (C??) region in pig primary fetal fibroblasts (PPFFs) using gene targeting technology, and the generation of live animals from these cells via somatic cell nuclear transfer (SCNT) cloning. There are only two other targeted loci previously published in swine, and this is the first report of a targeted disruption of an Ig light chain locus in a livestock species. Pigs with one targeted C?? allele (heterozygous knockout or ±) were bred together to generate C?? homozygous knockout (?/?) animals. Peripheral blood mononuclear cells (PBMCs) and mesenteric lymph nodes (MLNs) from C?? ?/? pigs were devoid of ??-containing Igs. Furthermore, there was an increase in lambda (??) light chain expression when compared to that of wild-type littermates (C?? +/+). Targeted inactivation of the Ig heavy chain locus has also been achieved and work is underway to inactivate the pig lambda light chain locus. 相似文献
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Jin X von Gall C Pieschl RL Gribkoff VK Stehle JH Reppert SM Weaver DR 《Molecular and cellular biology》2003,23(3):1054-1060
Two high-affinity, G protein-coupled melatonin receptor subtypes have been identified in mammals. Targeted disruption of the Mel(1a) melatonin receptor prevents some, but not all, responses to the hormone, suggesting functional redundancy among receptor subtypes (Liu et al., Neuron 19:91-102, 1997). In the present work, the mouse Mel(1b) melatonin receptor cDNA was isolated and characterized, and the gene has been disrupted. The cDNA encodes a receptor with high affinity for melatonin and a pharmacological profile consistent with its assignment as encoding a melatonin receptor. Mice with targeted disruption of the Mel(1b) receptor have no obvious circadian phenotype. Melatonin suppressed multiunit electrical activity in the suprachiasmatic nucleus (SCN) in Mel(1b) receptor-deficient mice as effectively as in wild-type controls. The neuropeptide, pituitary adenylyl cyclase activating peptide, increases the level of phosphorylated cyclic AMP response element binding protein (CREB) in SCN slices, and melatonin reduces this effect. The Mel(1a) receptor subtype mediates this inhibitory response at moderate ligand concentrations (1 nM). A residual response apparent in Mel(1a) receptor-deficient C3H mice at higher melatonin concentrations (100 nM) is absent in Mel(1a)-Mel(1b) double-mutant mice, indicating that the Mel(1b) receptor mediates this effect of melatonin. These data indicate that there is a limited functional redundancy between the receptor subtypes in the SCN. Mice with targeted disruption of melatonin receptor subtypes will allow molecular dissection of other melatonin receptor-mediated responses. 相似文献
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M Malissen A Gillet B Rocha J Trucy E Vivier C Boyer F Kntgen N Brun G Mazza E Spanopoulou et al. 《The EMBO journal》1993,12(11):4347-4355
The CD3-zeta and CD3-eta polypeptides are two of the components of the T cell antigen receptor (TCR) which contribute to its efficient cell surface expression and account for part of its transducing capability. CD3-zeta and CD3-eta result from the alternative splicing of a single gene designated CD3-zeta/eta. To evaluate the role of these subunits during T cell development, we have produced mice with a disrupted CD3-zeta/eta gene. The analysis of thymocyte populations from the CD3-zeta/eta-/- homozygous mutant mice revealed that they have a profound reduction in the surface levels of TCR complexes and that the products of the CD3-zeta/eta gene appear to be needed for the efficient generation and/or survival of CD4+CD8+ thymocytes. Despite the almost total absence of mature single positive thymocytes, the lymph nodes from zeta/eta-/- mice were found to contain unusual CD4+CD8- and CD4-CD8+ single positive cells which were CD3-. In contrast to the situation observed in the thymus, the thymus-independent gut intraepithelial lymphocytes present in zeta/eta-/- mice do express TCR complexes on their surface and these are associated with Fc epsilon RI gamma homodimers. These results establish an essential role for the CD3-zeta/eta gene products during intrathymic T cell differentiation and further emphasize the difference between conventional T cells and thymus-independent gut intraepithelial lymphocytes. 相似文献
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Murine epidermis contains PKC zeta and eta as evidenced by the application of specific antisera. PKC zeta predominates in the cytosol and PKC eta in the particulate fraction. PKC zeta is shown to be present also in other murine tissues, with large amounts found in lung. Whereas epidermal PKC eta is completely down-regulated by treatment of mouse skin with TPA or bryostatin 1 for 18 h, PKC zeta is neither translocated by treatment with TPA for 20 min, nor down-regulated by treatment with TPA or bryostatin 1 for 18 h. PKC zeta is activated by phosphatidyl serine alone and does neither respond to Ca2+ nor to TPA. It is inhibited by staurosporine with an IC50 of 16 nM, which is within the same range of other PKC isoenzymes. The sensitivity of PKC zeta towards the staurosporine derivative K252a is similar to that of PKC alpha,beta,gamma but much higher than that of PKC delta and epsilon. 相似文献
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Targeted disruption of the mouse topoisomerase I gene by camptothecin selection. 总被引:4,自引:0,他引:4 下载免费PDF全文
S G Morham K D Kluckman N Voulomanos O Smithies 《Molecular and cellular biology》1996,16(12):6804-6809
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A Matsuura M Kinebuchi Y Itoh K Kasai K Yamada M C Yoshida M Horie K Kikuchi N Sato 《Cytogenetics and cell genetics》1999,85(3-4):301-305
The structure and pattern of expression of the CD3zeta chain have apparently been conserved throughout mammalian evolution. The organization of the rat CD3zeta locus was determined by genomic cloning and nucleotide sequencing. Most of the rat CD3zeta coding region was similar to mouse and human CD3zeta sequences. Whereas the 3' region involving alternative splicing was relatively well conserved at the nucleotide level, the deduced amino acid sequences were different in rats, mice and humans due to the presence of deletion and insertion mutations. Alternative splicing products of the CD3zeta locus, such as CD3eta, CD3θ and CD3tau, which have been reported for mice, were not expressed by rat T cells. By using fluorescence in situ hybridization, we have localized rat CD3zeta to chromosome 13q22-->q23. 相似文献
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Bunger MK Walisser JA Sullivan R Manley PA Moran SM Kalscheur VL Colman RJ Bradfield CA 《Genesis (New York, N.Y. : 2000)》2005,41(3):122-132
Disruption of the murine Mop3 (also known as Bmal1 or Arntl) locus results in a loss of behavioral and molecular circadian rhythms. Although Mop3 null mice do not display anomalies in early development, they do display reduced activity as they age. In an effort to explain this decreased activity, we characterized the physiological and anatomical changes that occurred with age. We observed that Mop3 null mice display an increased mortality after 26 weeks of age and a phenotype best described as a progressive noninflammatory arthropathy. Although little pathology is observed prior to 11 weeks of age, by 35 weeks of age essentially all Mop3 null animals develop joint ankylosis due to flowing ossification of ligaments and tendons and almost complete immobilization of weight-bearing and nonweight-bearing joints. This pathology appears to explain the decreased activity of Mop3 null mice and suggests that MOP3 is an inhibitor of ligament and tendon ossification. 相似文献
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Targeted disruption of the murine Nhe1 locus induces ataxia, growth retardation, and seizures 总被引:4,自引:0,他引:4
Bell Sheila M.; Schreiner Claire M.; Schultheis Patrick J.; Miller Marian L.; Evans Richard L.; Vorhees Charles V.; Shull Gary E.; Scott William J. 《American journal of physiology. Cell physiology》1999,276(4):C788
In most cells, theubiquitously expressedNa+/H+exchanger isoform 1 (NHE1) is thought to be a primary regulator of pHhomeostasis, cell volume regulation, and the proliferative response togrowth factor stimulation. To study the function of NHE1 duringembryogenesis when these cellular processes are very active, wetargeted the Nhe1 gene by replacingthe sequence encoding transmembrane domains 6 and 7 with the neomycinresistance gene. NHE activity assays on isolated acinar cells indicatedthat the targeted allele is functionally null. Although the absence ofNHE1 is compatible with embryogenesis,Nhe1 homozygous mutants(/) exhibit a decreased rate of postnatalgrowth that is first evident at 2 wk of age. At this time,Nhe1 / animals alsobegin to exhibit ataxia and epileptic-like seizures. Approximately 67%of the / mutants die before weaning. Postmortemexaminations frequently revealed an accumulation of a waxy particulatematerial inside the ears, around the eyes and chin, and on the ventralsurface of the paws. Histological analysis of adult tissues revealed athickening of the lamina propria and a slightly atrophic glandularmucosa in the stomach. 相似文献
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Targeted disruption of the insulin receptor gene in the mouse results in neonatal lethality. 总被引:19,自引:0,他引:19 下载免费PDF全文
R L Joshi B Lamothe N Cordonnier K Mesbah E Monthioux J Jami D Bucchini 《The EMBO journal》1996,15(7):1542-1547
Targeted disruption of the insulin receptor gene (Insr) in the mouse was achieved using the homologous recombination approach. Insr+/- mice were normal as shown by glucose tolerance tests. Normal Insr-/- pups were born at expected rates, indicating that Insr can be dispensable for intrauterine development, growth and metabolism. However, they rapidly developed diabetic ketoacidosis accompanied by a marked post-natal growth retardation (up to 30-40% of littermate size), skeletal muscle hypotrophy and fatty infiltration of the liver and they died within 7 days after birth. Total absence of the insulin receptor (IR), demonstrated in the homozygous mutant mice, also resulted in other metabolic disorders: plasma triglyceride level could increase 6-fold and hepatic glycogen content could be five times less as compared with normal littermates. The very pronounced hyperglycemia in Insr-/- mice could result in an increased plasma insulin level of up to approximately 300 microU/ml, as compared with approximately 25 microU/ml for normal littermates. However, this plasma level was still unexpectedly low when compared with human infants with leprechaunism, who lack IR but who could have extremely high insulinemia (up to > 4000 microU/ml). The pathogenesis resulting from a null mutation in Insr is discussed. 相似文献
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Targeted disruption of NBS1 reveals its roles in mouse development and DNA repair 总被引:1,自引:0,他引:1 下载免费PDF全文
Nijmegen breakage syndrome (NBS) is an autosomal recessive hereditary disease that shares some common defects with ataxia-telangiectasia. The gene product mutated in NBS, named NBS1, is a component of the Mre11 complex that is involved in DNA strand-break repair. To elucidate the physiological roles of NBS1, we disrupted the N-terminal exons of the NBS1 gene in mice. NBS1(m/m) mice are viable, growth retarded and hypersensitive to ionizing radiation (IR). NBS1(m/m) mice exhibit multiple lymphoid developmental defects, and rapidly develop thymic lymphoma. In addition, female NBS1(m/m) mice are sterile due to oogenesis failure. NBS1(m/m) cells are impaired in cellular responses to IR and defective in cellular proliferation. Most systematic and cellular defects identified in NBS1(m/m) mice recapitulate those in NBS patients, and are essentially identical to those observed in Atm(-/-) mice. In contrast to Atm(-/-) mice, spermatogenesis is normal in NBS1(m/m) mice, indicating that distinct roles of ATM have differential requirement for NBS1 activity. Thus, NBS1 and ATM have overlapping and distinct functions in animal development and DNA repair. 相似文献
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Targeted disruption of the Insl3 gene causes bilateral cryptorchidism. 总被引:21,自引:0,他引:21
S Zimmermann G Steding J M Emmen A O Brinkmann K Nayernia A F Holstein W Engel I M Adham 《Molecular endocrinology (Baltimore, Md.)》1999,13(5):681-691
The sexual dimorphic position of the gonads in mammals is dependent on differential development of two ligaments, the cranial suspensory ligament (CSL) and the gubernaculum. During male embryogenesis, outgrowth of the gubernaculum and regression of the CSL result in transabdominal descent of the testes, whereas in the female, development of the CSL in conjunction with failure of the gubernaculum development holds the ovaries in a position lateral to the kidneys. Several lines of evidence suggest that regression of the CSL and induction of gubernaculum development are mediated by testosterone and a yet unidentified testicular factor, respectively. The Insl3 gene (originally designated Ley I-L), a member of the insulin-like superfamily, is specifically expressed in Leydig cells of the fetal and postnatal testis and in theca cells of the postnatal ovary. Here we show that male mice homozygous for a targeted deletion of the Insl3 locus exhibit bilateral cryptorchidism with free moving testes and genital ducts. These malformations are due to failure of gubernaculum development during embryogenesis. In double-mutant male mice for Insl3 and androgen receptor genes, testes are positioned adjacent to the kidneys and steadied in the abdomen by the CSL. These findings demonstrate, that the Insl3 induces gubernaculum development in an androgen-independent way, while androgen-mediated regression of the CSL occurs independently from Insl3. 相似文献