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Protein stability

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155

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4

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38

Fluorescent Dye

42

Biochemical Assay Reagents

7

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4

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Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-124713

    DNA/RNA Synthesis Neurological Disease
    ML372 inhibits survival motor neuron (SMN) protein ubiquitination, increases SMN protein stability without affecting mRNA expression. ML372 improves spinal muscular atrophy (SMA) in mice. ML372 is brain penetrant and has a reasonable exposure and half-life in vivo .
    ML372
  • HY-W048838
    Acetyl-L-lysine
    1 Publications Verification

    Endogenous Metabolite Metabolic Disease
    Acetyl-L-lysine is an acetylated form of the amino acid L-lysine. Acetyl-L-lysine can participate in protein acylation processes, affecting protein functions such as stability and enzyme activity .
    Acetyl-L-lysine
  • HY-138192

    OGNG

    Biochemical Assay Reagents Others
    Octyl glucose neopentyl glycol (OGNG) is a neopentyl glycol detergent that can be used to maintain the stability of membrane proteins .
    Octyl glucose neopentyl glycol
  • HY-Y0537B

    Biochemical Assay Reagents Mitochondrial Metabolism Metabolic Disease
    Potassium chloride, for molecular biology is potassium chloride that can be used in molecular biology. Potassium chloride, for molecular biology affects the stability of biological membranes by disrupting the electrostatic interactions between proteins and lipids. Potassium chloride, for molecular biology affects the solubility of myofibrillar proteins and the integrity of mitochondria. Potassium chloride, for molecular biology is commonly used in homogenization buffers and protein extraction procedures .
    Potassium chloride, for molecular biology
  • HY-175413

    Biochemical Assay Reagents Others
    FTAC6 (C6F-TAC) is a lipophobic surfactant. FTAC6 does not solubilize biological membranes as a non-detergent and can substitute for detergents to keep membrane proteins soluble and improves stability after conventional solubilization. FTAC6 can be utilized in in vitro synthesis of membrane proteins .
    FTAC6
  • HY-152469

    Epigenetic Reader Domain Cancer
    Eleven-Nineteen-Leukemia Protein IN-1 is an inhibitor of ENL YEATS domain with an IC50 value of 14.5 nM. Eleven-Nineteen-Leukemia Protein IN-1 interacts with ENL protein and enhances the thermal stability of ENL protein in vitro .
    Eleven-Nineteen-Leukemia Protein IN-1
  • HY-W048838R

    Endogenous Metabolite Metabolic Disease
    Acetyl-L-lysine is an acetylated form of the amino acid L-lysine. Acetyl-L-lysine can participate in protein acylation processes, affecting protein functions such as stability and enzyme activity .
    Acetyl-L-lysine (Standard)
  • HY-152471

    Epigenetic Reader Domain Cancer
    Eleven-Nineteen-Leukemia Protein IN-3 is an orally active inhibitor of ENL YEATS domain with an IC50 value of 15.4 nM. Eleven-Nineteen-Leukemia Protein IN-3 down-regulates MYC expression through ENL in cells and can enhances the thermal stability of ENL protein in vitro .
    Eleven-Nineteen-Leukemia Protein IN-3
  • HY-177076

    Bcl-2 Family Cancer
    Dalvotoclax (Example 8) is a selective inhibitor of BCL-2. Dalvotoclax has good liver microsomal stability. Dalvotoclax inhibits the activity of anti-apoptotic BCL-2 protein and anti-apoptotic BCL-XL protein. Dalvotoclax can be studied in research for B cell leukemia .
    Dalvotoclax
  • HY-174359E

    Biochemical Assay Reagents Others
    Alkyne-PEG-NH2 (MW 20000) is an alkyne-functionalized bifunctional PEG derivative that can be used to modify proteins, peptides, and other materials. The alkyne group reacts with azides in aqueous solution in a copper-catalyzed manner. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins .
    Alkyne-PEG-NH2 (MW 20000)
  • HY-174359C

    Biochemical Assay Reagents Others
    Alkyne-PEG-NH2 (MW 5000) is an alkyne-functionalized bifunctional PEG derivative that can be used to modify proteins, peptides, and other materials. The alkyne group reacts with azides in aqueous solution in a copper-catalyzed manner. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins .
    Alkyne-PEG-NH2 (MW 5000)
  • HY-174359D

    Biochemical Assay Reagents Others
    Alkyne-PEG-NH2 (MW 10000) is an alkyne-functionalized bifunctional PEG derivative that can be used to modify proteins, peptides, and other materials. The alkyne group reacts with azides in aqueous solution in a copper-catalyzed manner. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins .
    Alkyne-PEG-NH2 (MW 10000)
  • HY-174359

    Biochemical Assay Reagents Others
    Alkyne-PEG-NH2 (MW 1000) is an alkyne-functionalized bifunctional PEG derivative that can be used to modify proteins, peptides, and other materials. The alkyne group reacts with azides in aqueous solution in a copper-catalyzed manner. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins .
    Alkyne-PEG-NH2 (MW 1000)
  • HY-174359B

    Biochemical Assay Reagents Others
    Alkyne-PEG-NH2 (MW 3400) is an alkyne-functionalized bifunctional PEG derivative that can be used to modify proteins, peptides, and other materials. The alkyne group reacts with azides in aqueous solution in a copper-catalyzed manner. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins .
    Alkyne-PEG-NH2 (MW 3400)
  • HY-174359H

    Biochemical Assay Reagents Others
    Alkyne-PEG-NH2 (MW 40000) is an alkyne-functionalized bifunctional PEG derivative that can be used to modify proteins, peptides, and other materials. The alkyne group reacts with azides in aqueous solution in a copper-catalyzed manner. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins .
    Alkyne-PEG-NH2 (MW 40000)
  • HY-174359A

    Biochemical Assay Reagents Others
    Alkyne-PEG-NH2 (MW 2000) is an alkyne-functionalized bifunctional PEG derivative that can be used to modify proteins, peptides, and other materials. The alkyne group reacts with azides in aqueous solution in a copper-catalyzed manner. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins .
    Alkyne-PEG-NH2 (MW 2000)
  • HY-146302
    14-3-3η Protein inhibitor 1
    2 Publications Verification

    Apoptosis Cancer
    14-3-3η Protein inhibitor 1 (Compound C11) is a 14-3-3η protein inhibitor with a KD of 35 µM. 14-3-3η Protein inhibitor 1 shows inhibitory activities against several typical human liver cancer cell lines. 14-3-3η Protein inhibitor 1 induces cell apoptosis and G1-S cell cycle arrest with good metabolic stability .
    14-3-3η Protein inhibitor 1
  • HY-D1993

    Fluorescent Dye Others
    ATTO 647 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 647 NHS ester is an NHS ester derivative of ATTO 647 that can be used to label proteins or antibodies.
    ATTO 647 NHS ester
  • HY-D1929

    Fluorescent Dye Others
    ATTO 594 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 594 NHS ester is an NHS ester derivative of ATTO 594 that can be used to label proteins or antibodies.
    ATTO 594 NHS ester
  • HY-D2038

    Fluorescent Dye Others
    ATTO 550 alkyne is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 550 alkyne is an alkyne derivative of ATTO 550 and can be used to label proteins or antibodies.
    ATTO 550 alkyne
  • HY-D1305

    Fluorescent Dye Others
    ATTO 488 carboxylic acid is a new fluorescent label based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 488 carboxylic acid is a carboxylic acid derivative of ATTO 488, which can be used to label proteins or antibodies.
    ATTO 488 carboxylic acid
  • HY-D1961

    Fluorescent Dye Others
    ATTO 565 maleimide is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 565 maleimide is a maleimide derivative of ATTO 565, which can be used to label proteins or antibodies.
    ATTO 565 maleimide
  • HY-D2046

    Fluorescent Dye Others
    ATTO 532 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 532 NHS ester is an NHS ester derivative of ATTO 532 that can be used to label proteins or antibodies.
    ATTO 532 NHS ester
  • HY-D1957

    Fluorescent Dye Others
    ATTO 633 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 633 NHS ester is an NHS ester derivative of ATTO 633 that can be used to label proteins or antibodies.
    ATTO 633 NHS ester
  • HY-D2019

    Fluorescent Dye Others
    ATTO 550 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 550 NHS ester is an NHS ester derivative of ATTO 550 that can be used to label proteins or antibodies.
    ATTO 550 NHS ester
  • HY-153524

    Fluorescent Dye Others
    ATTO 425 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 425 NHS ester is an NHS ester derivative of ATTO 425 that can be used to label proteins or antibodies.
    ATTO 425 NHS ester
  • HY-D2062

    Fluorescent Dye Others
    ATTO 740 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 740 NHS ester is an NHS ester derivative of ATTO 740 that can be used to label proteins or antibodies.
    ATTO 740 NHS ester
  • HY-D2014

    Fluorescent Dye Others
    ATTO 565 alkyne is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 565 alkyne is an alkyne derivative of ATTO 565 and can be used to label proteins or antibodies.
    ATTO 565 alkyne
  • HY-D2035

    Fluorescent Dye Others
    ATTO 514 alkyne is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 514 alkyne is an alkyne derivative of ATTO 514 and can be used to label proteins or antibodies.
    ATTO 514 alkyne
  • HY-D2002

    Fluorescent Dye Others
    ATTO 488 maleimide is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 488 maleimide is a maleimide derivative of ATTO 488, which can be used to label proteins or antibodies.
    ATTO 488 maleimide
  • HY-D2047

    Fluorescent Dye Others
    ATTO 532 maleimide is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 532 maleimide is a maleimide derivative of ATTO 532, which can be used to label proteins or antibodies.
    ATTO 532 maleimide
  • HY-D2016

    Fluorescent Dye Others
    ATTO 565 cadaverine is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 565 cadaverine is a cadaverine derivative of ATTO 565, which can be used to label proteins or antibodies.
    ATTO 565 cadaverine
  • HY-D1959

    Fluorescent Dye Others
    ATTO 565 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 565 NHS ester is an NHS ester derivative of ATTO 565 that can be used to label proteins or antibodies.
    ATTO 565 NHS ester
  • HY-D1939

    Fluorescent Dye Others
    ATTO 465 amine is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 465 amine is an amine derivative of ATTO 465 and can be used to label proteins or antibodies.
    ATTO 465 amine
  • HY-D2063

    Fluorescent Dye Others
    ATTO 740 maleimide is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 740 maleimide is a maleimide derivative of ATTO 740, which can be used to label proteins or antibodies.
    ATTO 740 maleimide
  • HY-D2015

    Fluorescent Dye Others
    ATTO 488 alkyne is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 488 alkyne is an alkyne derivative of ATTO 488 and can be used to label proteins or antibodies.
    ATTO 488 alkyne
  • HY-D1933

    Fluorescent Dye Others
    ATTO 590 maleimide is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 590 maleimide is a maleimide derivative of ATTO 590, which can be used to label proteins or antibodies.
    ATTO 590 maleimide
  • HY-D2059

    Fluorescent Dye Others
    ATTO 700 maleimide is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 700 maleimide is a maleimide derivative of ATTO 700, which can be used to label proteins or antibodies.
    ATTO 700 maleimide
  • HY-D2058

    Fluorescent Dye Others
    ATTO 700 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 700 NHS ester is an NHS ester derivative of ATTO 700 that can be used to label proteins or antibodies.
    ATTO 700 NHS ester
  • HY-D2026

    Fluorescent Dye Others
    ATTO 514 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 514 NHS ester is an NHS ester derivative of ATTO 514 that can be used to label proteins or antibodies.
    ATTO 514 NHS ester
  • HY-D1999

    Fluorescent Dye Others
    ATTO 665 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 665 NHS ester is an NHS ester derivative of ATTO 665 that can be used to label proteins or antibodies.
    ATTO 665 NHS ester
  • HY-D1932

    Fluorescent Dye Others
    ATTO 590 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 590 NHS ester is an NHS ester derivative of ATTO 590 that can be used to label proteins or antibodies.
    ATTO 590 NHS ester
  • HY-D2073

    Fluorescent Dye Others
    ATTO 680 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 680 NHS ester is an NHS ester derivative of ATTO 680 that can be used to label proteins or antibodies.
    ATTO 680 NHS ester
  • HY-D2074

    Fluorescent Dye Others
    ATTO 680 maleimide is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 680 maleimide is a maleimide derivative of ATTO 680, which can be used to label proteins or antibodies.
    ATTO 680 maleimide
  • HY-D2021

    Fluorescent Dye Others
    ATTO 550 maleimide is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 550 maleimide is a maleimide derivative of ATTO 550, which can be used to label proteins or antibodies.
    ATTO 550 maleimide
  • HY-D1917

    Fluorescent Dye Others
    ATTO 390 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 390 NHS ester is an NHS ester derivative of ATTO 390 that can be used to label proteins or antibodies.
    ATTO 390 NHS ester
  • HY-D2052

    Fluorescent Dye Others
    ATTO 532 iodacetamid is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 532 iodacetamid is an iodoacetamide derivative of ATTO 532, which can be used to label proteins or antibodies.
    ATTO 532 iodacetamid
  • HY-D2001

    Fluorescent Dye Others
    ATTO 488 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 488 NHS ester is an NHS ester derivative of ATTO 488 that can be used to label proteins or antibodies.
    ATTO 488 NHS ester
  • HY-D1935

    Fluorescent Dye Others
    ATTO 465 NHS ester is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 465 NHS ester is an NHS ester derivative of ATTO 465 that can be used to label proteins or antibodies.
    ATTO 465 NHS ester
  • HY-D1946

    Fluorescent Dye Others
    ATTO 590 alkyne is a new fluorescent marker based on the Rhodamine structure. It has strong absorption, high fluorescence quantum yield, high thermal stability and photochemical stability, and is suitable for single molecule detection and high-resolution microscopy. ATTO 590 alkyne is an alkyne derivative of ATTO 590 and can be used to label proteins or antibodies.
    ATTO 590 alkyne

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