Trombitás K, Pollack G H, Wright J, Wang K
Center for Bioengineering, University of Washington, Seattle.
Cell Motil Cytoskeleton. 1993;24(4):274-83. doi: 10.1002/cm.970240408.
A "freeze-break" technique (Trombitás, K.: Acta Biochim. Biophys. Hung. 6:419-427, 1971) and immunoelectron microscopy were used to study the elastic properties of titin filaments. Small bundles of freshly prepared rabbit psoas muscle fibers were quickly frozen and broken under liquid nitrogen to fracture sarcomeres in planes perpendicular to the filament axis, in each of various regions along the sarcomere. The still-frozen specimens were thawed during fixation to allow elastic filaments to retract. The broken specimens were then labelled with monoclonal anti-titin antibodies against an unique epitope in the I-band. The titin epitopes were normally positioned symmetrically about the Z-line. However, in sarcomeres broken at the A-I junction, the epitopes no longer remained symmetrical: the titin filaments in the broken half-sarcomere retracted, independently of the thin filaments, forming a dense band just near the Z-line. The retracted density apparently did not reach the Z-line; retraction stopped at the level of the so-called N1-line. In sarcomeres broken at the Z-line level, the titin filaments retracted in the opposite direction. In this case the titin epitope retracted all the way to the ends of the thick filaments. It appears then that titin molecules form elastic filaments that are independent of thin filaments in most of the I-band. Near the Z-line, however, the titin filaments either have an inelastic domain or associate firmly with the thin filaments at the N1-line level.
采用“冷冻断裂”技术(特龙比塔斯,K.:《匈牙利生物化学与生物物理学报》6:419 - 427,1971年)和免疫电子显微镜来研究肌联蛋白丝的弹性特性。将新鲜制备的兔腰大肌纤维小束迅速冷冻,并在液氮下断裂,以使肌节在垂直于丝轴的平面上断裂,沿着肌节的各个不同区域进行操作。在固定过程中,仍处于冷冻状态的标本解冻,以使弹性丝回缩。然后用针对I带中一个独特表位的单克隆抗肌联蛋白抗体标记断裂的标本。肌联蛋白表位通常围绕Z线对称定位。然而,在A - I连接处断裂的肌节中,表位不再保持对称:断裂的半肌节中的肌联蛋白丝独立于细肌丝回缩,在靠近Z线处形成一条致密带。回缩的密度显然未到达Z线;回缩在所谓的N1线水平处停止。在Z线水平断裂的肌节中,肌联蛋白丝向相反方向回缩。在这种情况下,肌联蛋白表位一直回缩到粗肌丝的末端。由此可见,肌联蛋白分子形成的弹性丝在I带的大部分区域独立于细肌丝。然而,在靠近Z线处,肌联蛋白丝要么有一个无弹性区域,要么在N1线水平与细肌丝紧密结合。