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An Introduction to Molecular Developmental Biology09:27

An Introduction to Molecular Developmental Biology

Molecular signals play a major role in the complex processes occurring during embryonic development. These signals regulate activities such as cell differentiation and migration, which contribute to the formation of specific cell types and structures. The use of molecular approaches allows researchers to investigate these physical and chemical mechanisms in detail.
This video will review a brief history of the study of molecular events during development. Next, key questions asked by molecular...
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Automated Protocols for Macromolecular Crystallization at the MRC Laboratory of Molecular Biology11:20

Automated Protocols for Macromolecular Crystallization at the MRC Laboratory of Molecular Biology

Automated systems and protocols for the routine preparation of a large number of screens and nanoliter crystallization droplets for vapor diffusion experiments are described and...
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Molecular Evolution of the Tre Recombinase12:02

Molecular Evolution of the Tre Recombinase

Here we report the generation of Tre recombinase through directed, molecular evolution. Tre recombinase recognizes a pre-defined target sequence within the LTR sequences of the HIV-1 provirus, resulting in the excision and eradication of the provirus from infected human cells. While still in its infancy, directed molecular evolution will allow the creation of custom enzymes that will serve as tools of molecular surgery and molecular...
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Genetically-encoded Molecular Probes to Study G Protein-coupled Receptors16:16

Genetically-encoded Molecular Probes to Study G Protein-coupled Receptors

We genetically-encode the unnatural amino acid, p-azido-L-phenylalanine at various targeted positions in GPCRs and show the versatility of the azido group in different applications. These include a targeted photocrosslinking technology to identify residues in the ligand-binding pocket of a GPCR, and site-specific bioorthogonal modification of GPCRs with a peptide-epitope tag or fluorescent...
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Using Whole Mount in situ Hybridization to Link Molecular and Organismal Biology12:50

Using Whole Mount in situ Hybridization to Link Molecular and Organismal Biology

Whole mount in situ hybridization (WISH) was used in an upper level undergraduate Comparative Vertebrate Biology course in addition to vertebrate dissections. This gave students the opportunity to study gene expression patterns as well as gross anatomy, linking the study of molecular and organismal biology within one...
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Biology of Microbial Communities - Interview14:42

Biology of Microbial Communities - Interview

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