Search Results - "Mooers, S U"

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  1. 1

    Lack of endothelium-dependent relaxation in coronary resistance arteries of cholesterol-fed rabbits by Osborne, J A, Siegman, M J, Sedar, A W, Mooers, S U, Lefer, A M

    Published in The American journal of physiology (01-03-1989)
    “…The endothelium-dependent contractile responses of subepicardial coronary resistance arteries (286 +/- 18 microns ID, n = 22) from rabbits fed either a 0.5 or…”
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  2. 2

    Cooperative activation of myosin by light chain phosphorylation in permeabilized smooth muscle by Vyas, T B, Mooers, S U, Narayan, S R, Witherell, J C, Siegman, M J, Butler, T M

    Published in The American journal of physiology (01-07-1992)
    “…The purpose of this study was to determine the quantitative relationship between the number of myosin molecules that increase their ATPase activity and the…”
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  3. 3

    Hypertrophy of colonic smooth muscle: structural remodeling, chemical composition, and force output by Siegman, M J, Butler, T M, Mooers, S U, Trinkle-Mulcahy, L, Narayan, S, Stirewalt, W S, Starcher, B C

    Published in The American journal of physiology (01-06-1997)
    “…The cellular basis of adaptations occurring during the development of megacolon was studied with the lethal spotted mouse model. Age-dependent changes in the…”
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  4. 4

    Cross-bridge cycling at rest and during activation. Turnover of myosin-bound ADP in permeabilized smooth muscle by VYAS, T. B, MOOERS, S. U, NARAYAN, S. R, SIEGMAN, M. J, BUTLER, T. M

    Published in The Journal of biological chemistry (11-03-1994)
    “…Single turnover experiments were performed on myosin-bound ADP by measuring the time course of incorporation of [3H]ADP following rapid formation of [3H]ATP by…”
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    Rapid turnover of myosin light chain phosphate during cross-bridge cycling in smooth muscle by Butler, T M, Narayan, S R, Mooers, S U, Siegman, M J

    Published in The American journal of physiology (01-10-1994)
    “…The rate of phosphatase-mediated dephosphorylation of the regulatory light chain of smooth muscle myosin was determined under nearly steady-state conditions in…”
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  6. 6

    Slowing of cross-bridge cycling in smooth muscle without evidence of an internal load by Butler, T M, Siegman, M J, Mooers, S U

    Published in The American journal of physiology (01-12-1986)
    “…We have tested whether the slowing in velocity of shortening that occurs in mammalian smooth muscle under conditions of high force output and dephosphorylated…”
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  7. 7

    Phosphatase inhibition with okadaic acid does not alter the relationship between force and myosin light chain phosphorylation in permeabilized smooth muscle by Siegman, M J, Butler, T M, Mooers, S U

    “…The phosphatase inhibitor, okadaic acid, has been used to test the hypothesis that myosin light chain phosphatase activity plays a central role in latchbridge…”
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  8. 8

    Myosin-product complex in the resting state and during relaxation of smooth muscle by Butler, T M, Siegman, M J, Mooers, S U, Narayan, S R

    Published in The American journal of physiology (01-06-1990)
    “…Previous findings suggested that in resting smooth muscle ADP is bound to myosin and that phosphorylation of the myosin, and its subsequent interaction with…”
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  9. 9

    Altered isoactin gene expression in the affected bowel segments of the lethal spotted mouse by Liddell, R A, Mooers, S U, Siegman, M J, McHugh, K M

    Published in Gastroenterology (New York, N.Y. 1943) (01-08-1993)
    “…Actin is a key contractile protein associated with the normal differentiation and function of gastrointestinal smooth muscle cells. Distinct changes in…”
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  10. 10

    The Myosin Cross-Bridge Cycle and Its Control by Twitchin Phosphorylation in Catch Muscle by Butler, Thomas M., Narayan, Srinivasa R., Mooers, Susan U., Hartshorne, David J., Siegman, Marion J.

    Published in Biophysical journal (2001)
    “…The anterior byssus retractor muscle of Mytilus edulis was used to characterize the myosin cross-bridge during catch, a state of tonic force maintenance with a…”
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    Regulation of Catch Muscle by Twitchin Phosphorylation: Effects on Force, ATPase, and Shortening by Butler, Thomas M., Mooers, Susan U., Li, Chenqing, Narayan, Srinivasa, Siegman, Marion J.

    Published in Biophysical journal (01-10-1998)
    “…Recent experiments on permeabilized anterior byssus retractor muscle (ABRM) of Mytilus edulis have shown that phosphorylation of twitchin releases catch force…”
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    Chemical energetics of single isometric tetani in mammalian smooth muscle by Butler, T M, Siegman, M J, Mooers, S U, Davies, R E

    Published in The American journal of physiology (01-07-1978)
    “…A rabbit taenia coli preparation has been used to study the chemical energetics of smooth muscle contraction. Under the experimental conditions, the muscle had…”
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  15. 15

    Chemical energy usage during stimulation and stretch of mammalian smooth muscle by BUTLER, T. M, SIEGMAN, M. J, MOOERS, S. V

    Published in Pflügers Archiv (01-08-1984)
    “…High energy phosphate usage was measured in the rabbit taenia coli subjected to stimulation and stretch (0.12 Lo/min) and was compared to that observed…”
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  16. 16

    Phosphorylation of a high molecular weight (approximately 600 kDa) protein regulates catch in invertebrate smooth muscle by Siegman, M J, Mooers, S U, Li, C, Narayan, S, Trinkle-Mulcahy, L, Watabe, S, Hartshorne, D J, Butler, T M

    “…A unique property of smooth muscle is its ability to maintain force with a very low expenditure of energy. This characteristic is highly expressed in molluscan…”
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    Calcium-dependent resistance to stretch and stress relaxation in resting smooth muscles by Siegman, MJ, Butler, TM, Mooers, SU, Davies, RE

    Published in The American journal of physiology (01-11-1976)
    “…Mechanical responses to stretch and length-tension relations were examined in rabbit taenia coli, mesenteric vein, aorta, and myometrium and in guinea pig…”
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  20. 20

    Comparison of the effects of 2,3-butanedione monoxime on force production, myosin light chain phosphorylation and chemical energy usage in intact and permeabilized smooth and skeletal muscles by Siegman, M J, Mooers, S U, Warren, T B, Warshaw, D M, Ikebe, M, Butler, T M

    “…The primary goal of this study was to determine the utility of 2,3-butanedione monoxime as a tool for determining and separating the chemical energy usage…”
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