Elizabeth M Munding
Overview
Explore the profile of Elizabeth M Munding including associated specialties, affiliations and a list of published articles.
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Articles
8
Citations
354
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0
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Recent Articles
1.
Yang J, Hayano M, Griffin P, Amorim J, Bonkowski M, Apostolides J, et al.
Cell
. 2024 Mar;
187(5):1312-1313.
PMID: 38428398
No abstract available.
2.
Yang J, Hayano M, Griffin P, Amorim J, Bonkowski M, Apostolides J, et al.
Cell
. 2023 Jan;
186(2):305-326.e27.
PMID: 36638792
All living things experience an increase in entropy, manifested as a loss of genetic and epigenetic information. In yeast, epigenetic information is lost over time due to the relocalization of...
3.
Talkish J, Igel H, Perriman R, Shiue L, Katzman S, Munding E, et al.
PLoS Genet
. 2020 May;
16(5):e1008854.
PMID: 32459805
[This corrects the article DOI: 10.1371/journal.pgen.1008249.].
4.
Talkish J, Igel H, Perriman R, Shiue L, Katzman S, Munding E, et al.
PLoS Genet
. 2019 Aug;
15(8):e1008249.
PMID: 31437148
Introns are a prevalent feature of eukaryotic genomes, yet their origins and contributions to genome function and evolution remain mysterious. In budding yeast, repression of the highly transcribed intron-containing ribosomal...
5.
Valdmanis P, Kim H, Chu K, Zhang F, Xu J, Munding E, et al.
Nat Commun
. 2018 Dec;
9(1):5321.
PMID: 30552326
miR-122 is a highly expressed liver microRNA that is activated perinatally and aids in regulating cholesterol metabolism and promoting terminal differentiation of hepatocytes. Disrupting expression of miR-122 can re-activate embryo-expressed...
6.
Valdmanis P, Gu S, Chu K, Jin L, Zhang F, Munding E, et al.
Nat Med
. 2016 Apr;
22(5):557-62.
PMID: 27064447
Small RNAs can be engineered to target and eliminate expression of disease-causing genes or infectious viruses, resulting in the preclinical and clinical development of RNA interference (RNAi) therapeutics using these...
7.
Munding E, Shiue L, Katzman S, Donohue J, Ares Jr M
Mol Cell
. 2013 Jul;
51(3):338-48.
PMID: 23891561
During meiosis in yeast, global splicing efficiency increases and then decreases. Here we provide evidence that splicing improves due to reduced competition for the splicing machinery. The timing of this...
8.
Munding E, Igel A, Shiue L, Dorighi K, Trevino L, Ares Jr M
Genes Dev
. 2010 Dec;
24(23):2693-704.
PMID: 21123654
Splicing regulatory networks are essential components of eukaryotic gene expression programs, yet little is known about how they are integrated with transcriptional regulatory networks into coherent gene expression programs. Here...