Smerdu Vika, Ugwoke Chiedozie Kenneth, Šink Žiga
Institute of Anatomy, Faculty of Medicine, University of Ljubljana.
Eur J Histochem. 2025 Jan 21;69(1). doi: 10.4081/ejh.2025.4192. Epub 2025 Mar 24.
Muscle spindles are skeletal muscle sensory receptors composed of intrafusal fibres, partially encapsulated by connective tissue capsule. This capsule encloses the central A and B regions while leaving the distal C region extracapsular. Several past studies in rat have shown that muscle spindles typically contain a single bag1 fibre, a single bag2 fibre, and two smaller chain fibres. Intrafusal fibres co-express multiple myosin heavy chain (MyHC) isoforms: -slow or -1, -slow-tonic, -α, -2a, -2b, -embryonic, and -neonatal. While MyHC-2x was previously thought absent, the recently discovered MyHC-15 isoform has been identified in the C region of rat bag fibres. Using antibodies specific for nine MyHC isoforms and analyzing four different rat skeletal muscles-soleus, extensor digitorum longus, and the lateral and medial heads of gastrocnemius-we aimed to further characterize the co-expression pattern of MyHC-15 with other known isoforms and to determine whether MyHC-2x is expressed in rat intrafusal fibres. While rodents are widely used as animal models in skeletal muscle research, notable species-specific differences in MyHC isoform expression exist. Our findings revealed that MyHC-15 expression in rat intrafusal fibres is less abundant than in human fibres. MyHC-15 was primarily observed in bag fibres but was not detected in the C region, contrary to previous reports in both rat and human. We confirmed the absence of MyHC-2x in rat intrafusal fibres. Similarly, MyHC-embryonic and -neonatal were not detected in the analyzed spindles, suggesting that previously used antibodies may have cross-reacted with MyHC-2a and -2b. While our results partially corroborate previous extensive studies, discrepancies suggest that MyHC expression in intrafusal fibres varies not only along the fibre length but also across muscles.
肌梭是由梭内肌纤维组成的骨骼肌感觉感受器,部分被结缔组织囊包裹。该囊包围中央A区和B区,而远端C区位于囊外。过去对大鼠的多项研究表明,肌梭通常包含一根袋1纤维、一根袋2纤维和两根较小的链纤维。梭内肌纤维共表达多种肌球蛋白重链(MyHC)异构体:慢型或-1型、慢张力型、α型、2a型、2b型、胚胎型和新生型。虽然以前认为不存在MyHC-2x,但最近在大鼠袋纤维的C区发现了MyHC-15异构体。我们使用针对九种MyHC异构体的特异性抗体,并分析了四种不同的大鼠骨骼肌——比目鱼肌、趾长伸肌以及腓肠肌的外侧头和内侧头——旨在进一步表征MyHC-15与其他已知异构体的共表达模式,并确定MyHC-2x是否在大鼠梭内肌纤维中表达。虽然啮齿动物在骨骼肌研究中被广泛用作动物模型,但MyHC异构体表达存在显著的物种特异性差异。我们的研究结果表明,大鼠梭内肌纤维中MyHC-15的表达不如人类纤维丰富。与之前大鼠和人类的报道相反,MyHC-15主要在袋纤维中观察到,但在C区未检测到。我们证实大鼠梭内肌纤维中不存在MyHC-2x。同样,在所分析的肌梭中未检测到MyHC-胚胎型和-新生型,这表明之前使用的抗体可能与MyHC-2a和-2b发生了交叉反应。虽然我们的结果部分证实了之前的广泛研究,但差异表明梭内肌纤维中MyHC的表达不仅沿纤维长度变化,而且在不同肌肉之间也有所不同。