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      Molecular Mechanisms of Muscle Tone Impairment under Conditions of Real and Simulated Space Flight

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          Abstract

          Kozlovskaya et al. [ 1] and Grigoriev et al. [ 2] showed that enormous loss of muscle stiffness (atonia) develops in humans under true (space flight) and simulated microgravity conditions as early as after the first days of exposure. This phenomenon is attributed to the inactivation of slow motor units and called reflectory atonia. However, a lot of evidence indicating that even isolated muscle or a single fiber possesses substantial stiffness was published at the end of the 20th century. This intrinsic stiffness is determined by the active component, i.e. the ability to form actin-myosin cross-bridges during muscle stretch and contraction, as well as by cytoskeletal and extracellular matrix proteins, capable of resisting muscle stretch. The main facts on intrinsic muscle stiffness under conditions of gravitational unloading are considered in this review. The data obtained in studies of humans under dry immersion and rodent hindlimb suspension is analyzed. The results and hypotheses regarding reduced probability of cross-bridge formation in an atrophying muscle due to increased interfilament spacing are described. The evidence of cytoskeletal protein (titin, nebulin, etc.) degradation during gravitational unloading is also discussed. The possible mechanisms underlying structural changes in skeletal muscle collagen and its role in reducing intrinsic muscle stiffness are presented. The molecular mechanisms of changes in intrinsic stiffness during space flight and simulated microgravity are reviewed.

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          Stance and Motion. / Eds Gurfinkel V.S., Ioffe M.Ye., Massion J. N.Y.: Plenum Press, 1998

          (1988)
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            Author and article information

            Contributors
            Journal
            Acta Naturae
            Acta Naturae
            ActaNaturae
            Acta Naturae
            A.I. Gordeyev
            2075-8251
            Apr-Jun 2021
            : 13
            : 2
            : 85-97
            Affiliations
            State Scientific Center of Russian Federation – Institute of Biomedical Problems, Moscow, 123007 Russia
            Lomonosov Moscow State University Research Institute of Mechanics, Moscow, 119192 Russia
            Institute of Experimental and Theoretical Biophysics, Moscow Region, Pushchino, 142290 Russia
            Article
            10.32607/actanaturae.10953
            8327152
            34377559
            2db52699-4a80-4d5e-8837-70dab45f9266
            Copyright ® 2021 National Research University Higher School of Economics.

            This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

            History
            : 6 April 2020
            : 4 August 2020
            Categories
            Research Article
            Molecular Biology

            Life sciences
            skeletal muscle,gravitational unloading,atonia,hindlimb suspension,dry immersion,muscle stiffness,intrinsic stiffness,passive stiffness,cytoskeleton,sarcomeric cytoskeletal proteins,titin,collagen,signaling

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