The DNA Curtains assay is a recently developed experimental platform for protein-DNA interaction studies at the single-molecule level that is based on anchoring and alignment of DNA fragments. The DNA Curtains so far have been made by using chromium barriers and fluid lipid bilayer membranes, which makes such a specialized assay technically challenging and relatively unstable. Herein, we report on an alternative strategy for DNA arraying for analysis of individual DNA-protein interactions. It relies on stable DNA tethering onto nano-patterned protein templates via high affinity molecular recognition. We describe fabrication of streptavidin templates (line features as narrow as 200 nm) onto modified glass coverslips by combining surface chem...
We present a novel method for fabricating unimole cular double-stranded DNA microarrays on solid sur...
DNA nanotechnology is an emerging field that provides tools to design and create programmable, spati...
International audienceCommonly, one of the challenges in the development of today’s nanodevices is t...
The DNA Curtains assay is a recently developed experimental platform for protein–DNA interaction stu...
The DNA Curtains assay is a recently developed experimental platform for protein–DNA interaction stu...
The DNA Curtains assay is a recently developed experimental platform for protein–DNA interaction stu...
The DNA Curtains assay is a recently developed experimental platform for protein–DNA interaction stu...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
ABSTRACT: Single-molecule imaging of biological macro-molecules has dramatically impacted our unders...
Single-molecule (SM) techniques have been contributing to unraveling the detailed mechanisms underly...
DNA curtain is a high-throughput system, integrating a lipid bilayer, fluorescence imaging, and micr...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
Technical advance enables us to investigate the veiled details of biological reactions at the molecu...
Recently biological imaging techniques have been rapidly advanced. In particular, real-time visualiz...
International audienceCommonly, one of the challenges in the development of today’s nanodevices is t...
We present a novel method for fabricating unimole cular double-stranded DNA microarrays on solid sur...
DNA nanotechnology is an emerging field that provides tools to design and create programmable, spati...
International audienceCommonly, one of the challenges in the development of today’s nanodevices is t...
The DNA Curtains assay is a recently developed experimental platform for protein–DNA interaction stu...
The DNA Curtains assay is a recently developed experimental platform for protein–DNA interaction stu...
The DNA Curtains assay is a recently developed experimental platform for protein–DNA interaction stu...
The DNA Curtains assay is a recently developed experimental platform for protein–DNA interaction stu...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
ABSTRACT: Single-molecule imaging of biological macro-molecules has dramatically impacted our unders...
Single-molecule (SM) techniques have been contributing to unraveling the detailed mechanisms underly...
DNA curtain is a high-throughput system, integrating a lipid bilayer, fluorescence imaging, and micr...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
Technical advance enables us to investigate the veiled details of biological reactions at the molecu...
Recently biological imaging techniques have been rapidly advanced. In particular, real-time visualiz...
International audienceCommonly, one of the challenges in the development of today’s nanodevices is t...
We present a novel method for fabricating unimole cular double-stranded DNA microarrays on solid sur...
DNA nanotechnology is an emerging field that provides tools to design and create programmable, spati...
International audienceCommonly, one of the challenges in the development of today’s nanodevices is t...