Y10S930/22

LIPID-FREE ANCHORING OF THERMOPHILIC BACTERIOPHAGE G20C PORTAL ADAPTER INTO SOLID-STATE NANOPORES
20220373533 · 2022-11-24 ·

Hybrid nanopores, comprising a protein pore supported within a solid-state membrane, which combine the robust nature of solid-state membranes with the easily tunable and precise engineering of protein nanopores. In an embodiment, a lipid-free hybrid nanopore comprises a water soluble and stable, modified portal protein of the Thermus thermophilus bacteriophage G20c, electrokinetically inserted into a larger nanopore in a solid-state membrane. The hybrid pore is stable and easy to fabricate, and exhibits low peripheral leakage, allowing sensing and discrimination among different types of biomolecules.

Lipid-free anchoring of thermophilic bacteriophage G20c portal adapter into solid-state nanopores

Hybrid nanopores, comprising a protein pore supported within a solid-state membrane, which combine the robust nature of solid-state membranes with the easily tunable and precise engineering of protein nanopores. In an embodiment, a lipid-free hybrid nanopore comprises a water soluble and stable, modified portal protein of the Thermus thermophilus bacteriophage G20c, electrokinetically inserted into a larger nanopore in a solid-state membrane. The hybrid pore is stable and easy to fabricate, and exhibits low peripheral leakage, allowing sensing and discrimination among different types of biomolecules.

Polypeptide Set to Be Used in Light Dependent Gene Recombination
20200157514 · 2020-05-21 ·

The purpose of the present invention is to provide a set of two polypeptides for use in light-dependent genetic recombination in which the N-terminal side fragment and the C-terminal side fragment of a Cre protein having an amino acid sequence of SEQ ID NO: 1 respectively bind to two proteins light-dependently forming a dimer.

Lipid-free anchoring of thermophilic bacteriophage G20C portal adapter into solid-state nanopores

Hybrid nanopores, comprising a protein pore supported within a solid-state membrane, which combine the robust nature of solid-state membranes with the easily tunable and precise engineering of protein nanopores. In an embodiment, a lipid-free hybrid nanopore comprises a water soluble and stable, modified portal protein of the Thermus thermophilus bacteriophage G20c, electrokinetically inserted into a larger nanopore in a solid-state membrane. The hybrid pore is stable and easy to fabricate, and exhibits low peripheral leakage, allowing sensing and discrimination among different types of biomolecules.

Lipid-Free Anchoring of Thermophilic Bacteriophage G20c Portal Adapter into Solid-State Nanopores
20190360998 · 2019-11-28 ·

Hybrid nanopores, comprising a protein pore supported within a solid-state membrane, which combine the robust nature of solid-state membranes with the easily tunable and precise engineering of protein nanopores. In an embodiment, a lipid-free hybrid nanopore comprises a water soluble and stable, modified portal protein of the Thermus thermophilus bacteriophage G20c, electrokinetically inserted into a larger nanopore in a solid-state membrane. The hybrid pore is stable and easy to fabricate, and exhibits low peripheral leakage, allowing sensing and discrimination among different types of biomolecules.

Lipid-Free Anchoring of Thermophilic Bacteriophage G20c Portal Adapter into Solid-State Nanopores
20240361296 · 2024-10-31 ·

Hybrid nanopores, comprising a protein pore supported within a solid-state membrane, which combine the robust nature of solid-state membranes with the easily tunable and precise engineering of protein nanopores. In an embodiment, a lipid-free hybrid nanopore comprises a water soluble and stable, modified portal protein of the Thermus thermophilus bacteriophage G20c, electrokinetically inserted into a larger nanopore in a solid-state membrane. The hybrid pore is stable and easy to fabricate, and exhibits low peripheral leakage, allowing sensing and discrimination among different types of biomolecules.

Polypeptide set to be used in light dependent gene recombination
12286650 · 2025-04-29 · ·

The purpose of the present invention is to provide a set of two polypeptides for use in light-dependent genetic recombination in which the N-terminal side fragment and the C-terminal side fragment of a Cre protein having an amino acid sequence of SEQ ID NO: 1 respectively bind to two proteins light-dependently forming a dimer.

Lipid-free anchoring of thermophilic bacteriophage G20c portal adapter into solid-state nanopores

Hybrid nanopores, comprising a protein pore supported within a solid-state membrane, which combine the robust nature of solid-state membranes with the easily tunable and precise engineering of protein nanopores. In an embodiment, a lipid-free hybrid nanopore comprises a water soluble and stable, modified portal protein of the Thermus thermophilus bacteriophage G20c, electrokinetically inserted into a larger nanopore in a solid-state membrane. The hybrid pore is stable and easy to fabricate, and exhibits low peripheral leakage, allowing sensing and discrimination among different types of biomolecules.

Lipid-Free Anchoring of Thermophilic Bacteriophage G20c Portal Adapter into Solid-State Nanopores
20250298003 · 2025-09-25 ·

Hybrid nanopores, comprising a protein pore supported within a solid-state membrane, which combine the robust nature of solid-state membranes with the easily tunable and precise engineering of protein nanopores. In an embodiment, a lipid-free hybrid nanopore comprises a water soluble and stable, modified portal protein of the Thermus thermophilus bacteriophage G20c, electrokinetically inserted into a larger nanopore in a solid-state membrane. The hybrid pore is stable and easy to fabricate, and exhibits low peripheral leakage, allowing sensing and discrimination among different types of biomolecules