نتایج جستجو برای: gene knockout techniques

تعداد نتایج: 1740317  

2017
Yannan Jiang Yingyan Yu

Mouse models are useful tool for carcinogenic study. They will greatly enrich the understanding of pathogenesis and molecular mechanisms for gastric cancer. However, only few of mice could develop gastric cancer spontaneously. With the development and improvement of gene transfer technology, investigators created a variety of transgenic and knockout/knockin mouse models of gastric cancer, such ...

2017
Garmen Yuen Fehad J. Khan Shaojian Gao Jayne M. Stommel Eric Batchelor Xiaolin Wu Ji Luo

CRISPR/Cas9 is a powerful gene editing tool for gene knockout studies and functional genomic screens. Successful implementation of CRISPR often requires Cas9 to elicit efficient target knockout in a population of cells. In this study, we investigated the role of several key factors, including variation in target copy number, inherent potency of sgRNA guides, and expression level of Cas9 and sgR...

Journal: :International journal for parasitology 2004
C K Moreira M T Marrelli M Jacobs-Lorena

Completion of the complex developmental program of Plasmodium in the mosquito is essential for parasite transmission, yet this part of its life cycle is still poorly understood. In recent years, considerable progress has been made in the identification and characterization of genes expressed during parasite development in the mosquito. This line of investigation was greatly facilitated by the a...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1998
R Strepp S Scholz S Kruse V Speth R Reski

Little is known about the division of eukaryotic cell organelles and up to now neither in animals nor in plants has a gene product been shown to mediate this process. A cDNA encoding a homolog of the bacterial cell division protein FtsZ, an ancestral tubulin, was isolated from the eukaryote Physcomitrella patens and used to disrupt efficiently the genomic locus in this terrestrial seedless plan...

2018
Christian Madry Vasiliki Kyrargyri I. Lorena Arancibia-Cárcamo Renaud Jolivet Shinichi Kohsaka Robert M. Bryan David Attwell

Microglia exhibit two modes of motility: they constantly extend and retract their processes to survey the brain, but they also send out targeted processes to envelop sites of tissue damage. We now show that these motility modes differ mechanistically. We identify the two-pore domain channel THIK-1 as the main K+ channel expressed in microglia in situ. THIK-1 is tonically active, and its activit...

Journal: :The Journal of biological chemistry 2002
Jijie Gu Hidehiko Kawai Linghu Nie Hiroyuki Kitao Dmitri Wiederschain Aart G Jochemsen John Parant Guillermina Lozano Zhi-Min Yuan

MDMX, an MDM2-related protein, has emerged as yet another essential negative regulator of p53 tumor suppressor, since loss of MDMX expression results in p53-dependent embryonic lethality in mice. However, it remains unknown why neither homologue can compensate for the loss of the other. In addition, results of biochemical studies have suggested that MDMX inhibits MDM2-mediated p53 degradation, ...

Journal: :Neuron 1995
Patrizia Piccioli Anna Di Luzio Rainer Amann Rufina Schuligoi M.Azim Surani Josef Donnerer Antonino Cattaneo

Recombinant antibodies are efficiently secreted by cells of the nervous system. Thus, their local expression in the CNS of transgenic mice could be used to perturb the function of the corresponding antigen. As a first application of this approach, we have generated transgenic mice that express antibodies against the neuropeptide substance P, under the transcriptional control of the promoter of ...

Journal: :ILAR journal 2002
Sarah H Elsea Rebecca E Lucas

In recent years, mouse models for human metabolic diseases have become commonplace because the information gained from in vivo study of biochemical pathways is invaluable, and many metabolic diseases are relatively easy to recreate in mice through gene knockout technology in embryonic stem cells. In certain cases, however, the knockout mice may reproduce only some of the human disease phenotype...

2017
Shoji Suzuki Norio Kurosawa

Multiple gene knockout systems developed in the thermoacidophilic crenarchaeon Sulfolobus acidocaldarius are powerful genetic tools. However, plasmid construction typically requires several steps. Alternatively, PCR tailing for high-throughput gene disruption was also developed in S. acidocaldarius, but repeated gene knockout based on PCR tailing has been limited due to lack of a genetic marker...

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