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    Relation: FCT and FEDER (01/SAICT/2016 022153); Bilateral Cooperation Program Greece – Germany 2017 (project BIOMUSE-0195); Programa Operativo FEDER Plurirregional de España (POPE) 2014-2020; Programa Operatiu FEDER de Catalunya 2014-2020; Swiss National Science Foundation (SFNS); Greek national funds research funding program ARISTEIA II (project-3461); Federal Ministry of Education and Research - BMBF, Germany) project BIOMUSE-0195; Operational Programme “Competitiveness, Entrepreneurship and Innovation” (NSRF 2014-2020); SNSF (project grant PP00P3_176977); FCT UIDB/00329/2020; FCT CEECIND/02391/2017; Spanish Ministerio de Economia y Competitividad (MEIC) (RYC-2013-14797); PGC2018-098574-B-I00 (MEIC/FEDER); Secretaria d’Universitats i Recerca del Departament d’Economia i Coneixement de la Generalitat de Catalunya (GRC 2017 SGR 937); PGC2018-098574-B-I00 (MEIC/FEDER) grant; National Institutes of Health grant R01GM135899; National Institutes of Health grant R35GM139383; https://www.cell.com/cell/fulltext/S0092-8674(21)00370-6?_returnURL=https%3A%2F%2Flinkinghub.elsevier.com%2Fretrieve%2Fpii%2FS0092867421003706%3Fshowall%3Dtrue#secsectitle0020; Clemente, F., Unterländer, M., Dolgova, O., Amorim, C. E. G., Coroado-Santos, F., Neuenschwander, S., … Papageorgopoulou, C. (2021). The genomic history of the Aegean palatial civilizations. Cell, 184(10), 2565-2586.e21. https://doi.org/10.1016/j.cell.2021.03.039; http://hdl.handle.net/10451/49251

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    Relation: Radian, Serban; Diekmann, Yoan; Gabrovska, Plamena; Holland, Brendan; Bradley, Lisa; Wallace, Helen; Stals, Karen; Bussell, Anna‐marie; McGurren, Karen; Cuesta, Martin; Ryan, Anthony W.; Herincs, Maria; Hernández‐ramírez, Laura C.; Holland, Aidan; Samuels, Jade; Aflorei, Elena Daniela; Barry, Sayka; Dénes, Judit; Pernicova, Ida; Stiles, Craig E.; Trivellin, Giampaolo; McCloskey, Ronan; Ajzensztejn, Michal; Abid, Noina; Akker, Scott A.; Mercado, Moises; Cohen, Mark; Thakker, Rajesh V.; Baldeweg, Stephanie; Barkan, Ariel; Musat, Madalina; Levy, Miles; Orme, Stephen M.; Unterländer, Martina; Burger, Joachim; Kumar, Ajith V.; Ellard, Sian; McPartlin, Joseph; McManus, Ross; Linden, Gerard J.; Atkinson, Brew; Balding, David J.; Agha, Amar; Thompson, Chris J.; Hunter, Steven J.; Thomas, Mark G.; Morrison, Patrick J.; Korbonits, Márta (2017). "Increased Population Risk of AIPâ Related Acromegaly and Gigantism in Ireland." 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J Clin Endocrinol Metab 99: 1122 â 1131.; Vierimaa O, Georgitsi M, Lehtonen R, Vahteristo P, Kokko A, Raitila A, Tuppurainen K, Ebeling TML, Salmela PI, Paschke R, Gündogdu S, De Menis E, et al. 2006. Pituitary adenoma predisposition caused by germline mutations in the AIP gene. Science 312: 1228 â 1230.; Trivellin G, Daly AF, Faucz FR, Yuan B, Rostomyan L, Larco DO, Schernthanerâ Reiter MH, Szarek E, Leal LF, Caberg Jâ H, Castermans E, Villa C, et al. 2014. Gigantism and acromegaly due to Xq26 microduplications and GPR101 mutation. N Engl J Med: 1 â 12.; Tichomirowa MA, Barlier A, Daly AF, Jaffrainâ Rea ML, Ronchi C, Yaneva M, Urban JD, Petrossians P, Elenkova A, Tabarin A, Desailloud R, Maiter D, et al. 2011. High prevalence of AIP gene mutations following focused screening in young patients with sporadic pituitary macroadenomas. Eur J Endocrinol 165: 509 â 515.; The International HapMap Consortium. 2007. A second generation human haplotype map of over 3.1 million SNPs. Nature 449: 851 â 861.; Templeton AR. 2006. Population genetics and microevolutionary theory. Hoboken, New Jersey: John Wiley & Sons, Inc.; Stephens M, Smith NJ, Donnelly P. 2001. A new statistical method for haplotype reconstruction from population data. Am J Hum Genet 68: 978 â 989.; Stephens JC, Reich DE, Goldstein DB, Shin HD, Smith MW, Carrington M, Winkler C, Huttley GA, Allikmets R, Schriml L, Gerrard B, Malasky M, et al. 1998. Dating the origin of the CCR5â Delta32 AIDSâ resistance allele by the coalescence of haplotypes. Am J Hum Genet 62: 1507 â 1515.; Stals K, Trivellin G, Korbonits M. 2011. AIP mutation in pituitary adenomas. N Engl J Med 364: 1974 â 1975.; Schöfl C, Honegger J, Droste M, Grussendorf M, Finke R, Plöckinger U, Berg C, Willenberg HS, Lammert A, Klingmüller D, Jaurschâ Hancke C, Tönjes A, et al. 2014. Frequency of AIP gene mutations in young patients with acromegaly: a registryâ based study. 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AIP mutations in young patients with acromegaly and the Tampico giant: the Mexican experience. Endocrine 53: 402 â 411.; Raitila A, Lehtonen HJ, Arola J, Heliövaara E, Ahlsten M, Georgitsi M, Jalanko A, Paetau A, Aaltonen LA, Karhu A. 2010. Mice with inactivation of aryl hydrocarbon receptorâ interacting protein (Aip) display complete penetrance of pituitary adenomas with aberrant ARNT expression. Am J Pathol 177: 1969 â 1976.; Prichard JC. 1826. Researches into the physical history of mankind. London: John and Arthur Arch, Cornhill.; Prezio JA, Griffin JE, O’Brien JJ. 1961. Acromegalic gigantism. The Buffalo giant. Am J Med 31: 966 â 976.; Preda V, Korbonits M, Cudlip S, Karavitaki N, Grossman AB. 2014. Low rate of germline AIP mutations in patients with apparently sporadic pituitary adenomas before the age of 40: a singleâ center adult cohort. 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A secondâ generation combined linkageâ physical map of the human genome. Genome Res 17: 1783 â 1786.; Lynass B. 1842. Orange & love. Poems and songs, on different subjects. Belfast: Printed for the author.

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