Reiser Peter J, Bicer Sabahattin
Oral Biology, Ohio State University, Columbus, OH 43210, USA.
Arch Biochem Biophys. 2006 Dec 15;456(2):112-8. doi: 10.1016/j.abb.2006.06.013. Epub 2006 Jun 30.
Pig diaphragm slow fibers exhibit heterogeneity in myosin light chain 1 (MLC1) isoform expression, with many expressing fast-type MLC1 (MLC1F), as well as two isoforms of slow-type MLC1 (MLC1Sa and MLC1Sb). The goal of this study was to test if there is a relationship between MLC1 isoform expression and contractile properties among these fibers. Maximal shortening velocity (V(max)) and maximal isometric force generation, normalized with fiber cross-sectional area (P(o)/CSA), were measured in single fibers. V(max) was inversely related to the relative level of MLC1Sa. The level of MLC1Sa was reciprocally related to the levels of MLC1Sb and of MLC1F among individual fibers. Fibers expressing MLC1Sa and in which MLC1Sb was not detected generated greater P(o)/CSA, compared to fibers expressing MLC1Sb and not MLC1Sa. The results indicate a complex pattern of MLC1 isoform expression among pig diaphragm slow fibers and suggest that shortening velocity and force generation are modulated, in these fibers, by the MLC1 isoform composition.
猪膈肌慢肌纤维在肌球蛋白轻链1(MLC1)同工型表达上存在异质性,许多纤维表达快型MLC1(MLC1F),以及两种慢型MLC1同工型(MLC1Sa和MLC1Sb)。本研究的目的是测试这些纤维中MLC1同工型表达与收缩特性之间是否存在关系。在单根纤维中测量了最大缩短速度(V(max))和最大等长力产生,并以纤维横截面积进行归一化(P(o)/CSA)。V(max)与MLC1Sa的相对水平呈负相关。在单根纤维中,MLC1Sa的水平与MLC1Sb和MLC1F的水平呈反比关系。与表达MLC1Sb而不表达MLC1Sa的纤维相比,表达MLC1Sa且未检测到MLC1Sb的纤维产生更大的P(o)/CSA。结果表明猪膈肌慢肌纤维中MLC1同工型表达模式复杂,并表明在这些纤维中,缩短速度和力的产生受MLC1同工型组成的调节。