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  • Molecular Biologist/Bioinformatics Postdoc

    Seeking qualified candidate to join my research group, focused on the molecular mechanisms underlying neural differentiation, particularly from human embryonic stem cells. Our recent work uncovered patterns of microRNA and mRNA changes during differentiation in rat neural precursors, human ES cells, and human MSC. Proposed projects include the use of a new Applied Biosystems SOLiD sequencing system to identify novel microRNAs expressed during neural specification in human ES cells. We use bioinformatics to extract both general patterns and specific examples for hypothesis-driven laboratory experiments using standard techniques of molecular biology. Our goal is to learn how to program stem cells to develop therapeutic transplants for spinal cord injury and related conditions.

    A recent Ph.D. in molecular biology and/or bioinformatics is required. Experience with basic molecular biology methods (e.g., PCR, microarrays, promoter studies, regulated expression systems) stem cell culture techniques is preferred. Knowledge of bioinformatics methods related to gene expression studies (such as R/BioConductor) is preferred, as is programming experience with MySQL, PHP and/or PERL/BioPERL. At this time we can only consider U.S. citizens or holders of a valid green card. The position is available immediately.

    To apply, please visit our group's web site: http://www.ngelab.org and click the "Positions" heading.

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  • seqadmin
    Essential Discoveries and Tools in Epitranscriptomics
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    The field of epigenetics has traditionally concentrated more on DNA and how changes like methylation and phosphorylation of histones impact gene expression and regulation. However, our increased understanding of RNA modifications and their importance in cellular processes has led to a rise in epitranscriptomics research. “Epitranscriptomics brings together the concepts of epigenetics and gene expression,” explained Adrien Leger, PhD, Principal Research Scientist...
    04-22-2024, 07:01 AM
  • seqadmin
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    Proteins are often described as the workhorses of the cell, and identifying their sequences is key to understanding their role in biological processes and disease. Currently, the most common technique used to determine protein sequences is mass spectrometry. While still a valuable tool, mass spectrometry faces several limitations and requires a highly experienced scientist familiar with the equipment to operate it. Additionally, other proteomic methods, like affinity assays, are constrained...
    04-04-2024, 04:25 PM

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