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Marasinghe, Ashuboda,Lambacher, Stephen,Martens, William,Cohen, Michael,Giragama, Charith,Herath, Susantha,Molholt, Garry Institute for University Language Sejong Instituti 2003 Journal of Universal Language Vol.4 No.2
A universal perceptual space for 10 American English vowel sounds was derived for two groups of listeners-a group of native speakers of English and a group of native speakers of Japanese. Subsets of these two groups made ratings on 12 bipolar adjective scales for the same set of sounds, each of the two groups using anchoring adjectives taken from their native language. Although there was no evidence of any difference between the two groups in their INDSCAL-derived perceptual dimensions for these vowel sounds, the adjectives were sued differently in describing those same perceptual dimensions by the two groups. Though a few of the adjectives were used to describe similar perceptual variations, language typological implications of this investigation is that caution be exercised in generalizing semantic differential ratings obtained in one language, especially when those ratings are intended to aid in the interpretation of data from listeners speaking a different native language.
Lee, Hyojin,Cho, Jeong Soo,Lambacher, Nils,Lee, Jieun,Lee, Se-Jin,Lee, Tae Hoon,Gartner, Anton,Koo, Hyeon-Sook American Society for Biochemistry and Molecular Bi 2008 The Journal of biological chemistry Vol.283 No.22
<P>AAK-2 is one of two alpha isoforms of the AMP-activated protein kinase in Caenorhabditis elegans and is involved in life span maintenance, stress responses, and germ cell cycle arrest upon dauer entry. We found that AAK-2 was phosphorylated at threonine 243 in response to paraquat treatment and that this phosphorylation depends on PAR-4, the C. elegans LKB1 homologue. Both aak-2 mutation and par-4 knockdown increased the sensitivity of C. elegans worms to paraquat, and the double deficiency did not further increase sensitivity, indicating that aak-2 and par-4 act in a linear pathway. Both mutations also slowed body bending during locomotion and failed to reduce head oscillation in response to anterior touch. Consistent with this abnormal motility and behavioral response, expression of the AAK-2::green fluorescent protein fusion protein was observed in the ventral cord, some neurons, body wall muscle, pharynx, vulva, somatic gonad, and excretory cell. Our study suggests that AMPK can influence the behavior of C. elegans worms in addition to its well known function in metabolic control.</P>