Lowe Dawn A, Husom Aimee D, Ferrington Deborah A, Thompson LaDora V
Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota, Minneapolis 55455, USA.
Mech Ageing Dev. 2004 Sep;125(9):619-27. doi: 10.1016/j.mad.2004.07.002.
We tested the hypothesis that Ca(2+)-activated myosin ATPase activity is lower in muscles of aged rats relative to muscles of young rats, independent of changes in myosin isoform expression. Myofibrils were prepared from permeabilized fibers of soleus, plantaris, and semimembranosus muscles of young (8-12 months) and aged (32-38 months) F344 x BN rats and assayed for resting myosin ATPase, Ca(2+)-activated myosin ATPase, and myosin heavy chain (MHC) and myosin light chain (MLC) isoform compositions. Resting myosin ATPases were not affected by age in any muscle (P > or = 0.42). Ca(2+)-activated myosin ATPases of soleus and plantaris myofibrils were not affected by age (P > or = 0.31) but were 16% lower in semimembranosus myofibrils from aged rats (0.448 +/- 0.019 micromol P(i)/min/mg) compared to young rats (0.533 +/- 0.031 micromol P(i)/min/mg; P = 0.03). Correspondingly, maximal unloaded shortening velocity of single semimembranosus fibers from aged rats was slow (4.6 +/- 0.2 fiber lengths/s) compared with fibers from young rats (5.8 +/- 0.3 fiber lengths/s; P < 0.01). No age-related changes in MHC or regulatory MLC isoforms were detected in any muscle (P > or = 0.08) but changes in the essential MLC occurred in plantaris and semimembranosus muscles. The data indicate that Ca(2+)-activated myosin ATPase activity is reduced with age in semimembranosus muscle, independent of age-related changes in MHC isoform expression, and is one mechanism contributing to age-related slowing of contraction in that muscle.
与年轻大鼠的肌肉相比,老年大鼠肌肉中钙激活的肌球蛋白ATP酶活性较低,且与肌球蛋白亚型表达的变化无关。从年轻(8 - 12个月)和老年(32 - 38个月)的F344 x BN大鼠的比目鱼肌、跖肌和半膜肌的通透纤维中制备肌原纤维,并测定静息肌球蛋白ATP酶、钙激活的肌球蛋白ATP酶以及肌球蛋白重链(MHC)和肌球蛋白轻链(MLC)亚型组成。任何肌肉中的静息肌球蛋白ATP酶均不受年龄影响(P≥0.42)。比目鱼肌和跖肌肌原纤维的钙激活肌球蛋白ATP酶不受年龄影响(P≥0.31),但老年大鼠半膜肌肌原纤维中的该酶活性(0.448±0.019微摩尔无机磷/分钟/毫克)比年轻大鼠(0.533±0.031微摩尔无机磷/分钟/毫克;P = 0.03)低16%。相应地,老年大鼠单个半膜肌纤维的最大无负荷缩短速度较慢(4.6±0.2纤维长度/秒),而年轻大鼠纤维的速度为(5.8±0.3纤维长度/秒;P < 0.01)。在任何肌肉中均未检测到与年龄相关的MHC或调节性MLC亚型变化(P≥0.08),但跖肌和半膜肌中必需MLC发生了变化。数据表明,半膜肌中钙激活的肌球蛋白ATP酶活性随年龄降低,与MHC亚型表达的年龄相关变化无关,这是导致该肌肉收缩随年龄减慢的一种机制。