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Kurita, R.

Publications and source records attributed to Kurita, R..

2 recordsLinked to original sources

BAP1 deubiquitinase is a potent repressor of fetal hemoglobin biosynthesis

Human globin gene production transcriptionally \"switches\" from fetal to adult synthesis shortly after birth, and is controlled by macromolecular complexes that enhance or suppress transcription by cis-elements scattered throughout the locus. The DRED repressor is recruited to the {varepsilon}- and {gamma}-globin promoters by the orphan nuclear receptors TR2 (NR2C1) and TR4 (NR2C2) to engender their silencing in adult erythroid cells. Here we found that nuclear receptor corepressor-1 (NCoR1) is a critical component of DRED that acts as a scaffold to unite the DNA binding and epigenetic enzyme components (e.g. DNMT1 and LSD1) that elicit DRED function. We also describe a potent new regulator of {gamma}-globin repression: the deubiquitinase BAP1 is a component of the repressor complex whose activity maintains NCoR1 at sites in the {beta}-globin locus, and BAP1 inhibition in erythroid cells massively induces {gamma}-globin synthesis. These data provide new mechanistic insights through the discovery of novel epigenetic enzymes that mediate {gamma}-globin gene repression.

developmental biology

CRISPR-Cas9 interrogation of a putative fetal globin repressor in human erythroid cells.

Sickle Cell Disease and {beta}-thalassemia, which are caused by defective or deficient adult {beta}-globin (HBB) respectively, are the most common serious genetic blood diseases in the world. Expression of the fetal {beta}-like globin, also known as {gamma}-globin, can ameliorate both disorders by serving in place of the adult {beta}-globin. Here we use CRISPR-Cas9 gene editing to explore a putative {gamma}-globin silencer region identified by comparison of naturally-occurring deletion mutations associated with up-regulated {gamma}-globin. We find that deletion of a 1.7 kb consensus element or select 350 bp sub-regions from bulk populations of cells increases levels of fetal hemoglobin (HbF) or {gamma}-globin. Screening of individual sgRNAs in one sub-region revealed three single guides that caused mild increases in {gamma}-globin expression. However, clonal cell lines with the 1.7 kb region deleted did not up-regulate {gamma}-globin and neither did lines with either of two of sub-regions identified in the screen deleted. These data suggest that the region is not an autonomous {gamma}-globin silencer, and thus by itself is not a suitable therapeutic target in the {beta}-hemoglobinopathies.

genetics