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Journal Abstract Search


120 related items for PubMed ID: 33144093

  • 1.
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  • 3. Mammalian genome projects reveal new growth hormone (GH) sequences. Characterization of the GH-encoding genes of armadillo (Dasypus novemcinctus), hedgehog (Erinaceus europaeus), bat (Myotis lucifugus), hyrax (Procavia capensis), shrew (Sorex araneus), ground squirrel (Spermophilus tridecemlineatus), elephant (Loxodonta africana), cat (Felis catus) and opossum (Monodelphis domestica).
    Wallis M.
    Gen Comp Endocrinol; 2008 Jan 15; 155(2):271-9. PubMed ID: 17574247
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  • 5. [Genome-wide scan reveals the molecular mechanisms of functional differentiation of Myotis lucifugus and Pteropus vampyrus].
    Zeng YN, Shen YY, Zhang YP.
    Dongwuxue Yanjiu; 2013 Jun 15; 34(3):221-7. PubMed ID: 23775999
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  • 7. Genetically engineered proinsulin constitutively processed and secreted as mature, active insulin.
    Groskreutz DJ, Sliwkowski MX, Gorman CM.
    J Biol Chem; 1994 Feb 25; 269(8):6241-5. PubMed ID: 8119968
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  • 8. The evolution of S100A7: an unusual gene expansion in Myotis bats.
    Águeda-Pinto A, Castro LFC, Esteves PJ.
    BMC Evol Biol; 2019 May 14; 19(1):102. PubMed ID: 31088346
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  • 9. Gene structure and evolution of transthyretin in the order Chiroptera.
    Khwanmunee J, Leelawatwattana L, Prapunpoj P.
    Genetica; 2016 Feb 14; 144(1):71-83. PubMed ID: 26681450
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  • 10. NMR and photo-CIDNP studies of human proinsulin and prohormone processing intermediates with application to endopeptidase recognition.
    Weiss MA, Frank BH, Khait I, Pekar A, Heiney R, Shoelson SE, Neuringer LJ.
    Biochemistry; 1990 Sep 11; 29(36):8389-401. PubMed ID: 2252901
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  • 13. Myotis rufoniger genome sequence and analyses: M. rufoniger's genomic feature and the decreasing effective population size of Myotis bats.
    Bhak Y, Jeon Y, Jeon S, Chung O, Jho S, Jun J, Kim HM, Cho Y, Yoon C, Lee S, Kang JH, Lim JD, An J, Cho YS, Ryu DY, Bhak J.
    PLoS One; 2017 Sep 11; 12(7):e0180418. PubMed ID: 28678835
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  • 14. Complete mitochondrial genome sequences of three bats species and whole genome mitochondrial analyses reveal patterns of codon bias and lend support to a basal split in Chiroptera.
    Meganathan PR, Pagan HJ, McCulloch ES, Stevens RD, Ray DA.
    Gene; 2012 Jan 15; 492(1):121-9. PubMed ID: 22041054
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  • 15. Preferential cleavage of des-31,32-proinsulin over intact proinsulin by the insulin secretory granule type II endopeptidase. Implication of a favored route for prohormone processing.
    Rhodes CJ, Lincoln B, Shoelson SE.
    J Biol Chem; 1992 Nov 15; 267(32):22719-27. PubMed ID: 1429623
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  • 16. Proinsulin processing in the rat insulinoma cell line INS after overexpression of the endoproteases PC2 or PC3 by recombinant adenovirus.
    Irminger JC, Meyer K, Halban P.
    Biochem J; 1996 Nov 15; 320 ( Pt 1)(Pt 1):11-5. PubMed ID: 8947461
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  • 17. Novel Pathogenic De Novo INS p.T97P Variant Presenting With Severe Neonatal DKA.
    Lal RA, Moeller HP, Thomson EA, Horton TM, Lee S, Freeman R, Prahalad P, Poon ASY, Annes JP.
    Endocrinology; 2022 Feb 01; 163(2):. PubMed ID: 34888628
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  • 18. Complete sequences of eastern water bat, Myotis petax (Chiroptera; Microchiroptera; Vespertilionidae) mitogenome.
    Hwang JY, Jin GD, Park J, Lee SG, Kim EB.
    Mitochondrial DNA A DNA Mapp Seq Anal; 2016 Sep 01; 27(5):3715-6. PubMed ID: 26332748
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  • 19. The complete mitochondrial genome of Myotis lucifugus (Chiroptera: Vespertilionidae).
    Yu D, Qian K, Storey KB, Hu Y, Zhang J.
    Mitochondrial DNA A DNA Mapp Seq Anal; 2016 Jul 01; 27(4):2423-4. PubMed ID: 26057009
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