Genes that Escape Silencing on the Second X Chromosome May Drive Disease

Por um escritor misterioso

Descrição

When X-linked genes evade silencing on the “inactive” chromosome in XX cells, some protect women from diseases such as cancer, but others seem to promote conditions such as autoimmunity.
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Bisection of the X chromosome disrupts the initiation of chromosome silencing during meiosis in Caenorhabditis elegans
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Genes that escape from X‐chromosome inactivation: Potential contributors to Klinefelter syndrome - Navarro‐Cobos - 2020 - American Journal of Medical Genetics Part C: Seminars in Medical Genetics - Wiley Online Library
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
A schematic diagram of contribution of escape genes to the female bias
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Escaping but not the inactive X-linked protein complex coding genes may achieve X-chromosome dosage compensation and underlie X chromosome inactivation-related diseases - ScienceDirect
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Frontiers X Inactivation and Escape: Epigenetic and Structural Features
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
IJMS, Free Full-Text
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Not-So-Silent Partners Help Xist Silence X Chromosome
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
IJMS, Free Full-Text
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
When the balance is broken: X‐linked gene dosage from two X chromosomes and female‐biased autoimmunity - Syrett - 2019 - Journal of Leukocyte Biology - Wiley Online Library
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
X-Inactivation, Imprinting, and Long Noncoding RNAs in Health and Disease: Cell
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Integrated analysis of Xist upregulation and X-chromosome inactivation with single-cell and single-allele resolution
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Gene regulation in time and space during X-chromosome inactivation
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