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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1956 1
1973 1
1975 4
1976 9
1977 5
1978 6
1979 4
1980 8
1981 9
1982 6
1983 8
1984 5
1985 11
1986 5
1987 7
1988 8
1989 9
1990 10
1991 6
1992 3
1993 9
1994 11
1995 8
1996 7
1997 7
1998 5
1999 5
2000 7
2001 5
2002 15
2003 5
2004 14
2005 11
2006 7
2007 8
2008 9
2009 12
2010 10
2011 5
2012 10
2013 4
2014 3
2015 4
2016 4
2017 5
2018 11
2019 3
2020 3
2021 6
2022 8
2023 10
2024 3
2025 2

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346 results

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Page 1
In vivo base editing rescues Hutchinson-Gilford progeria syndrome in mice.
Koblan LW, Erdos MR, Wilson C, Cabral WA, Levy JM, Xiong ZM, Tavarez UL, Davison LM, Gete YG, Mao X, Newby GA, Doherty SP, Narisu N, Sheng Q, Krilow C, Lin CY, Gordon LB, Cao K, Collins FS, Brown JD, Liu DR. Koblan LW, et al. Among authors: erdos mr. Nature. 2021 Jan;589(7843):608-614. doi: 10.1038/s41586-020-03086-7. Epub 2021 Jan 6. Nature. 2021. PMID: 33408413 Free PMC article.
Hutchinson-Gilford progeria syndrome (HGPS or progeria) is typically caused by a dominant-negative CG-to-TA mutation (c.1824 C>T; p.G608G) in LMNA, the gene that encodes nuclear lamin A. This mutation causes RNA mis-splicing that produces progerin, a toxic protein that …
Hutchinson-Gilford progeria syndrome (HGPS or progeria) is typically caused by a dominant-negative CG-to-TA mutation (c.1824 C>T; p
Genome-wide association study and functional characterization identifies candidate genes for insulin-stimulated glucose uptake.
Williamson A, Norris DM, Yin X, Broadaway KA, Moxley AH, Vadlamudi S, Wilson EP, Jackson AU, Ahuja V, Andersen MK, Arzumanyan Z, Bonnycastle LL, Bornstein SR, Bretschneider MP, Buchanan TA, Chang YC, Chuang LM, Chung RH, Clausen TD, Damm P, Delgado GE, de Mello VD, Dupuis J, Dwivedi OP, Erdos MR, Fernandes Silva L, Frayling TM, Gieger C, Goodarzi MO, Guo X, Gustafsson S, Hakaste L, Hammar U, Hatem G, Herrmann S, Højlund K, Horn K, Hsueh WA, Hung YJ, Hwu CM, Jonsson A, Kårhus LL, Kleber ME, Kovacs P, Lakka TA, Lauzon M, Lee IT, Lindgren CM, Lindström J, Linneberg A, Liu CT, Luan J, Aly DM, Mathiesen E, Moissl AP, Morris AP, Narisu N, Perakakis N, Peters A, Prasad RB, Rodionov RN, Roll K, Rundsten CF, Sarnowski C, Savonen K, Scholz M, Sharma S, Stinson SE, Suleman S, Tan J, Taylor KD, Uusitupa M, Vistisen D, Witte DR, Walther R, Wu P, Xiang AH, Zethelius B; Meta-Analysis of Glucose and Insulin-related Traits Consortium (MAGIC); Ahlqvist E, Bergman RN, Chen YI, Collins FS, Fall T, Florez JC, Fritsche A, Grallert H, Groop L, Hansen T, Koistinen HA, Komulainen P, Laakso M, Lind L, Loeffler M, März W, Meigs JB, Raffel LJ, Rauramaa R, Rotter JI, Schwarz PEH, Stumvoll M, Sundström … See abstract for full author list ➔ Williamson A, et al. Among authors: erdos mr. Nat Genet. 2023 Jun;55(6):973-983. doi: 10.1038/s41588-023-01408-9. Epub 2023 Jun 8. Nat Genet. 2023. PMID: 37291194 Free PMC article.

Here we studied genetic variants influencing insulin levels measured 2 h after a glucose challenge in >55,000 participants from three ancestry groups. We identified ten new loci (P < 5 10(-8)) not previously associated with postchallenge insulin resistance, eight of

Here we studied genetic variants influencing insulin levels measured 2 h after a glucose challenge in >55,000 participants from three anc …
New genetic loci link adipose and insulin biology to body fat distribution.
Shungin D, Winkler TW, Croteau-Chonka DC, Ferreira T, Locke AE, Mägi R, Strawbridge RJ, Pers TH, Fischer K, Justice AE, Workalemahu T, Wu JMW, Buchkovich ML, Heard-Costa NL, Roman TS, Drong AW, Song C, Gustafsson S, Day FR, Esko T, Fall T, Kutalik Z, Luan J, Randall JC, Scherag A, Vedantam S, Wood AR, Chen J, Fehrmann R, Karjalainen J, Kahali B, Liu CT, Schmidt EM, Absher D, Amin N, Anderson D, Beekman M, Bragg-Gresham JL, Buyske S, Demirkan A, Ehret GB, Feitosa MF, Goel A, Jackson AU, Johnson T, Kleber ME, Kristiansson K, Mangino M, Leach IM, Medina-Gomez C, Palmer CD, Pasko D, Pechlivanis S, Peters MJ, Prokopenko I, Stančáková A, Sung YJ, Tanaka T, Teumer A, Van Vliet-Ostaptchouk JV, Yengo L, Zhang W, Albrecht E, Ärnlöv J, Arscott GM, Bandinelli S, Barrett A, Bellis C, Bennett AJ, Berne C, Blüher M, Böhringer S, Bonnet F, Böttcher Y, Bruinenberg M, Carba DB, Caspersen IH, Clarke R, Daw EW, Deelen J, Deelman E, Delgado G, Doney AS, Eklund N, Erdos MR, Estrada K, Eury E, Friedrich N, Garcia ME, Giedraitis V, Gigante B, Go AS, Golay A, Grallert H, Grammer TB, Gräßler J, Grewal J, Groves CJ, Haller T, Hallmans G, Hartman CA, Hassinen M, Hayward C, Heikkilä K, Herzig KH, Helme… See abstract for full author list ➔ Shungin D, et al. Among authors: erdos mr. Nature. 2015 Feb 12;518(7538):187-196. doi: 10.1038/nature14132. Nature. 2015. PMID: 25673412 Free PMC article.

We identify 49 loci (33 new) associated with waist-to-hip ratio adjusted for body mass index (BMI), and an additional 19 loci newly associated with related waist and hip circumference measures (P < 5 10(-8)). In total, 20 of the 49 waist-to-hip ratio adjusted for BMI lo

We identify 49 loci (33 new) associated with waist-to-hip ratio adjusted for body mass index (BMI), and an additional 19 loci newly associat …
Cardiometabolic health improvements upon dietary intervention are driven by tissue-specific insulin resistance phenotype: A precision nutrition trial.
Trouwborst I, Gijbels A, Jardon KM, Siebelink E, Hul GB, Wanders L, Erdos B, Péter S, Singh-Povel CM, de Vogel-van den Bosch J, Adriaens ME, Arts ICW, Thijssen DHJ, Feskens EJM, Goossens GH, Afman LA, Blaak EE. Trouwborst I, et al. Among authors: erdos b. Cell Metab. 2023 Jan 3;35(1):71-83.e5. doi: 10.1016/j.cmet.2022.12.002. Cell Metab. 2023. PMID: 36599304 Free article. Clinical Trial.
Cellular carboxypeptidases.
Skidgel RA, Erdös EG. Skidgel RA, et al. Among authors: erdos eg. Immunol Rev. 1998 Feb;161:129-41. doi: 10.1111/j.1600-065x.1998.tb01577.x. Immunol Rev. 1998. PMID: 9553770 Review.
Whereas deamidase cleaves a variety of peptides with C-terminal or penultimate hydrophobic residues (e.g. substance P, angiotensin I, bradykinin, endothelin, fMet-Leu-Phe). PRCP cleaves only peptides with a penultimate Pro residue (e.g. des-Arg9-bradykinin, angiotensin II) …
Whereas deamidase cleaves a variety of peptides with C-terminal or penultimate hydrophobic residues (e.g. substance P, angiotensin I, …
Large meta-analysis of genome-wide association studies identifies five loci for lean body mass.
Zillikens MC, Demissie S, Hsu YH, Yerges-Armstrong LM, Chou WC, Stolk L, Livshits G, Broer L, Johnson T, Koller DL, Kutalik Z, Luan J, Malkin I, Ried JS, Smith AV, Thorleifsson G, Vandenput L, Hua Zhao J, Zhang W, Aghdassi A, Åkesson K, Amin N, Baier LJ, Barroso I, Bennett DA, Bertram L, Biffar R, Bochud M, Boehnke M, Borecki IB, Buchman AS, Byberg L, Campbell H, Campos Obanda N, Cauley JA, Cawthon PM, Cederberg H, Chen Z, Cho NH, Jin Choi H, Claussnitzer M, Collins F, Cummings SR, De Jager PL, Demuth I, Dhonukshe-Rutten RAM, Diatchenko L, Eiriksdottir G, Enneman AW, Erdos M, Eriksson JG, Eriksson J, Estrada K, Evans DS, Feitosa MF, Fu M, Garcia M, Gieger C, Girke T, Glazer NL, Grallert H, Grewal J, Han BG, Hanson RL, Hayward C, Hofman A, Hoffman EP, Homuth G, Hsueh WC, Hubal MJ, Hubbard A, Huffman KM, Husted LB, Illig T, Ingelsson E, Ittermann T, Jansson JO, Jordan JM, Jula A, Karlsson M, Khaw KT, Kilpeläinen TO, Klopp N, Kloth JSL, Koistinen HA, Kraus WE, Kritchevsky S, Kuulasmaa T, Kuusisto J, Laakso M, Lahti J, Lang T, Langdahl BL, Launer LJ, Lee JY, Lerch MM, Lewis JR, Lind L, Lindgren C, Liu Y, Liu T, Liu Y, Ljunggren Ö, Lorentzon M, Luben RN, Maixner W, McGuigan FE, … See abstract for full author list ➔ Zillikens MC, et al. Among authors: erdos m. Nat Commun. 2017 Jul 19;8(1):80. doi: 10.1038/s41467-017-00031-7. Nat Commun. 2017. PMID: 28724990 Free PMC article.

Twenty-one single-nucleotide polymorphisms were significantly associated with lean body mass either genome wide (p < 5 10(-8)) or suggestively genome wide (p < 2.3 10(-6)). Replication in 63,475 (47,227 of European ancestry) individuals from 33 cohorts for who

Twenty-one single-nucleotide polymorphisms were significantly associated with lean body mass either genome wide (p < 5 10(-8)) or

Association analyses of 249,796 individuals reveal 18 new loci associated with body mass index.
Speliotes EK, Willer CJ, Berndt SI, Monda KL, Thorleifsson G, Jackson AU, Lango Allen H, Lindgren CM, Luan J, Mägi R, Randall JC, Vedantam S, Winkler TW, Qi L, Workalemahu T, Heid IM, Steinthorsdottir V, Stringham HM, Weedon MN, Wheeler E, Wood AR, Ferreira T, Weyant RJ, Segrè AV, Estrada K, Liang L, Nemesh J, Park JH, Gustafsson S, Kilpeläinen TO, Yang J, Bouatia-Naji N, Esko T, Feitosa MF, Kutalik Z, Mangino M, Raychaudhuri S, Scherag A, Smith AV, Welch R, Zhao JH, Aben KK, Absher DM, Amin N, Dixon AL, Fisher E, Glazer NL, Goddard ME, Heard-Costa NL, Hoesel V, Hottenga JJ, Johansson A, Johnson T, Ketkar S, Lamina C, Li S, Moffatt MF, Myers RH, Narisu N, Perry JR, Peters MJ, Preuss M, Ripatti S, Rivadeneira F, Sandholt C, Scott LJ, Timpson NJ, Tyrer JP, van Wingerden S, Watanabe RM, White CC, Wiklund F, Barlassina C, Chasman DI, Cooper MN, Jansson JO, Lawrence RW, Pellikka N, Prokopenko I, Shi J, Thiering E, Alavere H, Alibrandi MT, Almgren P, Arnold AM, Aspelund T, Atwood LD, Balkau B, Balmforth AJ, Bennett AJ, Ben-Shlomo Y, Bergman RN, Bergmann S, Biebermann H, Blakemore AI, Boes T, Bonnycastle LL, Bornstein SR, Brown MJ, Buchanan TA, Busonero F, Campbell H, Cappuccio FP, Caval… See abstract for full author list ➔ Speliotes EK, et al. Among authors: erdos mr. Nat Genet. 2010 Nov;42(11):937-48. doi: 10.1038/ng.686. Epub 2010 Oct 10. Nat Genet. 2010. PMID: 20935630 Free PMC article.

We confirmed 14 known obesity susceptibility loci and identified 18 new loci associated with body mass index (P < 5 10-8), one of which includes a copy number variant near GPRC5B. Some loci (at MC4R, POMC, SH2B1 and BDNF) map near key hypothalamic regulators of energy b

We confirmed 14 known obesity susceptibility loci and identified 18 new loci associated with body mass index (P < 5 10-8), one of

Human prolylcarboxypeptidase.
Odya CE, Erdös EG. Odya CE, et al. Among authors: erdos eg. Methods Enzymol. 1981;80 Pt C:460-6. doi: 10.1016/s0076-6879(81)80040-7. Methods Enzymol. 1981. PMID: 7341916 No abstract available.
Kinins, the long march--a personal view.
Erdös EG. Erdös EG. Cardiovasc Res. 2002 Jun;54(3):485-91. doi: 10.1016/s0008-6363(02)00284-5. Cardiovasc Res. 2002. PMID: 12031692 Review. No abstract available.
Peer review of the pesticide risk assessment of the active substance dichlorprop-P and variant dichlorprop-P-2-ethylhexyl.
European Food Safety Authority (EFSA); Arena M, Auteri D, Barmaz S, Brancato A, Brocca D, Bura L, Carrasco Cabrera L, Chiusolo A, Civitella C, Court Marques D, Crivellente F, Ctverackova L, De Lentdecker C, Egsmose M, Erdos Z, Fait G, Ferreira L, Goumenou M, Greco L, Ippolito A, Istace F, Jarrah S, Kardassi D, Leuschner R, Lythgo C, Magrans JO, Medina P, Mineo D, Miron I, Molnar T, Padovani L, Parra Morte JM, Pedersen R, Reich H, Riemenschneider C, Sacchi A, Santos M, Serafimova R, Sharp R, Stanek A, Streissl F, Sturma J, Szentes C, Tarazona J, Terron A, Theobald A, Vagenende B, Van Dijk J, Villamar-Bouza L. European Food Safety Authority (EFSA), et al. Among authors: erdos z. EFSA J. 2018 Jun 28;16(6):e05288. doi: 10.2903/j.efsa.2018.5288. eCollection 2018 Jun. EFSA J. 2018. PMID: 32625928 Free PMC article. Review.
The conclusions of EFSA following the peer review of the initial risk assessments carried out by the competent authorities of the rapporteur Member State Ireland and co-rapporteur Member State Poland for the pesticide active substance dichlorprop-P and the variant dichlorp …
The conclusions of EFSA following the peer review of the initial risk assessments carried out by the competent authorities of the rapporteur …
346 results