C12Y114/11027

METHODS AND COMPOSITIONS TO INCREASE HUMAN SOMATIC CELL NUCLEAR TRANSFER (SCNT) EFFICIENCY BY REMOVING HISTONE H3-LYSINE TRIMETHYLATION, AND DERIVATION OF HUMAN NT-ESC
20180291400 · 2018-10-11 ·

The present invention provides methods and compositions to improve the efficiency of somatic cell nuclear transfer (SCNT) of human cells and the consequent production of human nuclear transfer ESC (hNT-ESCs). More specifically, the present invention relates to the discovery that trimethylation of Histone H3-Lysine 9 (H3K9me3) in reprogramming resistant regions (RRRs) in the nuclear genetic material of human donor somatic cells prevents efficient human somatic cell nuclear reprogramming or SCNT. The present invention provide methods and compositions to decrease H3K9me3 in methods to improve efficacy of hSCNT by exogenous or overexpression of the demethylase KDM4 family and/or inhibiting methylation of H3K9me3 by inhibiting the histone methyltransferases SUV39h1 and/or SUV39h2.

Histone demethylase inhibitors

The present disclosure relates generally to compositions and methods for treating cancer and neoplastic disease. Provided herein are substituted pyridine derivative compounds, and compositions (including pharmaceutical compositions) that include these compounds. The subject compounds and compositions are useful for inhibition of at least one histone demethylase. Furthermore, the subject compounds and compositions are useful for the treatment of cancer or neoplastic disease, such as prostate cancer, breast cancer, bladder cancer, lung cancer, melanoma, retinoblastoma, or multiple endocrine neoplasia type 1.

INDUCIBLE SINGLE AAV SYSTEM AND USES THEREOF
20240390518 · 2024-11-28 · ·

Aspects of the disclosure relate to compositions and methods for epigenetic regulation of endogenous gene expression from viral vectors. In some embodiments, the disclosure provides expression constructs comprising a viral vector encoding a transgene, the activation of which is regulated by a rapamycin/rapalog-based system, and the transgene is capable of epigenetically regulate an endogenous gene.

METHOD FOR IDENTIFYING COMPOUND FOR INHIBITING AN ACTIVITY OF A HISTONE LYSINE DEMETHYLASE

A method for identifying a compound that inhibits an activity of a histone lysine demethylase, in which the compound interacts with three sites of a pocket of the histone lysine demethylase generated by using a computer program, an alpha-ketoglutarate (AKG), a methylated lysine, and a NIQ.

Method for identifying compound for inhibiting an activity of a histone lysine demethylase

The present invention relates to a method for identifying a compound that inhibits an activity of a histone lysine demethylase.

HISTONE DEMETHYLASE INHIBITORS
20170183325 · 2017-06-29 ·

The present disclosure relates generally to compositions and methods for treating cancer and neoplastic disease. Provided herein are substituted pyridine derivative compounds, and compositions (including pharmaceutical compositions) that include these compounds. The subject compounds and compositions are useful for inhibition of at least one histone demethylase. Furthermore, the subject compounds and compositions are useful for the treatment of cancer or neoplastic disease, such as prostate cancer, breast cancer, bladder cancer, lung cancer, melanoma, retinoblastoma, or multiple endocrine neoplasia type 1.

Compound, preparing method thereof, and use thereof as inhibitors of histone demethylase

Provided are a novel compound, preparing method thereof, and use thereof as inhibitor of histone demethylase. The compound represented by Chemical Formula 1 has activity which inhibits histone demethylase and thus is capable of specifically and effectively inhibit activity of histone demethylase.