Sticky Ends

Sticky ends are short, single-stranded DNA overhangs created when certain restriction enzymes cut the two strands of DNA at offset positions. These exposed sequences can temporarily pair with complementary bases on another DNA fragment through hydrogen bonding, bringing the fragments together for covalent joining by DNA ligase. In molecular biology, sticky ends enable precise and efficient construction of recombinant DNA, including plasmids carrying inserted genes. Their sequence specificity supports gene cloning, DNA mapping, and the assembly of engineered genetic constructs, making them an important foundation of restriction enzyme-based biotechnology and genetic engineering.

Sticky Ends - Related Videos

Research

JoVE Journal - Environment

Quantifying Corticolous Arthropods Using Sticky Traps

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Cited by 2 •

2020

We describe a semi-quantitative approach of measuring characteristics of corticolous (bark-dwelling) arthropod communities. We placed commercially manufactured sticky traps on tree boles to estimate abundance, total length (a surrogate to biomass), richness, and Shannon diversity for comparison among tree species.

Education

JoVE Science Education - Basic Biology

DNA Ligation Reactions

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2023

In molecular biology, ligation refers to the joining of two DNA fragments through the formation of a phosphodiester bond. An enzyme known as a ligase catalyzes the ligation reaction. In the cell, ligases repair single and double strand breaks that occur during DNA replication. In the laboratory, DNA ligase is used during molecular cloning to join DNA fragments of inserts with vectors – carrier DNA molecules that will replicate target fragments in host organisms. This video provides an...

Microinjection Techniques for Studying Mitosis in the Drosophila melanogaster Syncytial Embryo

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Cited by 18 •

2009

This protocol describes the use of microinjection and high resolution imaging in the Drosophila melanogaster syncytial embryo to study mitosis.

Microinjection of Live Drosophila Embryos: Early Delivery of Reagents to the Developing Embryo

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2023

This video describes how to perform microinjections that deliver reagents into live Drosophila embryos. Researchers can use this method to introduce exogenous compounds like nucleic acids and proteins during the early stages of embryo development. The featured protocol demonstrates how to set up and perform the procedure for injection of any soluble reagent–here, a fluorescent protein for live imaging experiments.

Research

JoVE Journal - Neuroscience
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Agarose Microchambers for Long-term Calcium Imaging of Caenorhabditis elegans

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Cited by 42 •

2015

Imaging behavior and neural activity over long time scales without immobilization of the animal is a prerequisite to understand behavior. Agarose microfluidic chambers imaging (AMI) can be used to image neural activity and behavior for all life stages of Caenorhabditis elegans.

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