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

Por um escritor misterioso
Last updated 22 dezembro 2024
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
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
A lifelong duty: how Xist maintains the inactive X chromosome - ScienceDirect
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
X-linked gene dosage contributes to sex disparities in disease.
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Frontiers Why Females Do Better: The X Chromosomal TLR7 Gene-Dose Effect in COVID-19
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Frontiers Recent Advances in Understanding the Reversal of Gene Silencing During X Chromosome Reactivation
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
Attrition of X Chromosome Inactivation in Aged Hematopoietic Stem Cells - ScienceDirect
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
PDF) Long noncoding RNA XIST: Mechanisms for X chromosome inactivation, roles in sex-biased diseases, and therapeutic opportunities
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Gracefully ageing at 50, X-chromosome inactivation becomes a paradigm for RNA and chromatin control
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Skewed X-inactivation is common in the general female population
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Cross-species examination of X-chromosome inactivation highlights domains of escape from silencing, Epigenetics & Chromatin
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
Long noncoding RNA XIST: Mechanisms for X chromosome inactivation, roles in sex-biased diseases, and therapeutic opportunities - ScienceDirect
Genes that Escape Silencing on the Second X Chromosome May Drive Disease
X chromosome escape maps differ between mouse tissues. The position of

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