Altered three-dimensional organization of sperm genome in DPY19L2-deficient globozoospermic patients

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منابع مشابه

Dpy19l2-deficient globozoospermic sperm display altered genome packaging and DNA damage that compromises the initiation of embryo development.

We recently identified the DPY19L2 gene as the main genetic cause of human globozoospermia. Non-genetically characterized cases of globozoospermia were associated with DNA alterations, suggesting that DPY19L2-dependent globozoospermia may be associated with poor DNA quality. However the origins of such defects have not yet been characterized and the consequences on the quality of embryos genera...

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O-35: Assessment of Genetic Variations of DPY19L2 in Total Globozoospermic Patients Referring to Royan Institute

Background Globozoospermia is a rare but severe teratozoospermia disorder which causes male infertility. Total globozoospermia is diagnosed by the presence of 100% roundheaded spermatozoa lacking an acrosome in semen analysis. Recent studies have shown that in large majority of globozoospermic patients, deletion of a 200 kb segment including the DPY19L2 gene occurs. Among all the genes in this ...

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Assisted oocyte activation overcomes fertilization failure in globozoospermic patients regardless of the DPY19L2 status.

STUDY QUESTION Does DPY19L2 status influence intracytoplasmic sperm injection (ICSI) outcomes with or without assisted oocyte activation (AOA)? SUMMARY ANSWER DPY19L2 mutations have no major impact on ICSI outcomes in globozoospermic patients. WHAT IS KNOWN ALREADY Globozoospermia is a rare and severe teratozoospermia characterized by round-headed spermatozoa lacking an acrosome. Recently, ...

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Three-Dimensional Genome Organization and Function in Drosophila

Understanding how the metazoan genome is used during development and cell differentiation is one of the major challenges in the postgenomic era. Early studies in Drosophila suggested that three-dimensional (3D) chromosome organization plays important regulatory roles in this process and recent technological advances started to reveal connections at the molecular level. Here we will consider gen...

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The dynamic three-dimensional organization of the diploid yeast genome

The budding yeast Saccharomyces cerevisiae is a long-standing model for the three-dimensional organization of eukaryotic genomes. However, even in this well-studied model, it is unclear how homolog pairing in diploids or environmental conditions influence overall genome organization. Here, we performed high-throughput chromosome conformation capture on diverged Saccharomyces hybrid diploids to ...

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ژورنال

عنوان ژورنال: Journal of Assisted Reproduction and Genetics

سال: 2018

ISSN: 1058-0468,1573-7330

DOI: 10.1007/s10815-018-1342-y