Jason G Knott
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Explore the profile of Jason G Knott including associated specialties, affiliations and a list of published articles.
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Articles
48
Citations
908
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Recent Articles
1.
Anger M, Komrskova K, Balboula A, Rinaudo P, Knott J
Front Cell Dev Biol
. 2025 Jan;
12():1547205.
PMID: 39850801
No abstract available.
2.
Driscoll C, Kim J, Knott J
Nat Struct Mol Biol
. 2024 May;
31(6):852-855.
PMID: 38789683
No abstract available.
3.
Driscoll C, Kim J, Ashry M, Knott J
Reproduction
. 2024 Jan;
167(4).
PMID: 38165360
Transcription factor AP2 gamma (TFAP2C) is a well-established regulator of the trophoblast lineage in mice and humans, but a handful of studies indicate that TFAP2C may play an important role...
4.
Kour R, Kim J, Roy A, Richardson B, Cameron M, Knott J, et al.
FASEB J
. 2023 Oct;
37(12):e23275.
PMID: 37902531
Ribosomal proteins play diverse roles in development and disease. Most ribosomal proteins have canonical roles in protein synthesis, while some exhibit extra-ribosomal functions. Previous studies in our laboratory revealed that...
5.
Anti-Müllerian hormone treatment enhances oocyte quality, embryonic development and live birth rate†
Sinha N, Driscoll C, Qi W, Huang B, Roy S, Knott J, et al.
Biol Reprod
. 2022 Jun;
107(3):813-822.
PMID: 35657015
The anti-Müllerian hormone (AMH) produced by the granulosa cells of growing follicles is critical for folliculogenesis and is clinically used as a diagnostic and prognostic marker of female fertility. Previous...
6.
Ashry M, Yang C, Rajput S, Folger J, Knott J, Smith G
Reprod Biol Endocrinol
. 2021 Sep;
19(1):141.
PMID: 34517901
Caudal Type Homeobox 2 (CDX2) is a key regulator of trophectoderm formation and maintenance in preimplantation embryos. We previously demonstrated that supplementation of exogenous follistatin, during in vitro culture of...
7.
Pauerova T, Radonova L, Horakova A, Knott J, Anger M
Front Cell Dev Biol
. 2021 Aug;
9:701179.
PMID: 34395431
Chromosome segregation during female meiosis is frequently incorrect with severe consequences including termination of further development or severe disorders, such as Down syndrome. Accurate chromosome segregation requires tight control of...
8.
Yu T, Qi X, Zhang L, Ning W, Gao D, Xu T, et al.
Zygote
. 2021 Apr;
29(6):417-426.
PMID: 33890562
N6-Methyladenosine (m6A) regulates oocyte-to-embryo transition and the reprogramming of somatic cells into induced pluripotent stem cells. However, the role of m6A methylation in porcine early embryonic development and its reprogramming...
9.
Cao Z, Zhang L, Hong R, Li Y, Wang Y, Qi X, et al.
Biol Reprod
. 2021 Feb;
104(5):1008-1021.
PMID: 33590832
N6-methyladenosine (m6A) catalyzed by METTL3 regulates the maternal-to-zygotic transition in zebrafish and mice. However, the role and mechanism of METTL3-mediated m6A methylation in blastocyst development remains unclear. Here, we show...
10.
Cao Z, Zhang D, Wang Y, Tong X, Avalos L, Khan I, et al.
Anim Reprod Sci
. 2020 Aug;
219:106510.
PMID: 32828396
The N-methyladenosine (m6A) derivative has the capacity for ubiquitous epigenetic modification of messenger RNA (mRNA) that regulates gene expression through post-transcriptional mRNA modifications. Findings with mapping of m6A methylomes have...