Department of Regenerative Musculoskeletal Medicine, Institute for Musculoskeletal Medicine, Westfälische Wilhelms-University, 48149 Münster, Germany.
Department of Trauma-, Hand-, and Reconstructive Surgery, University Hospital Münster, 48149 Münster, Germany.
Int J Mol Sci. 2020 Apr 18;21(8):2835. doi: 10.3390/ijms21082835.
Integrins are a family of transmembrane proteins, involved in substrate recognition and cell adhesion in cross-talk with the extra cellular matrix. In this study, we investigated the influence of integrin α2β1 on tendons, another collagen type I-rich tissue of the musculoskeletal system. Morphological, as well as functional, parameters were analyzed in vivo and in vitro, comparing wild-type against integrin α2β1 deficiency. Tenocytes lacking integrin α2β1 produced more collagen in vitro, which is similar to the situation in osseous tissue. Fibril morphology and biomechanical strength proved to be altered, as integrin α2β1 deficiency led to significantly smaller fibrils as well as changes in dynamic E-modulus in vivo. This discrepancy can be explained by a higher collagen turnover: integrin α2β1-deficient cells produced more matrix, and tendons contained more residual C-terminal fragments of type I collagen, as well as an increased matrix metalloproteinase-2 activity. A greatly decreased percentage of non-collagenous proteins may be the cause of changes in fibril diameter regulation and increased the proteolytic degradation of collagen in the integrin-deficient tendons. The results reveal a significant impact of integrin α2β1 on collagen modifications in tendons. Its role in tendon pathologies, like chronic degradation, will be the subject of future investigations.
整合素是一类跨膜蛋白家族,参与细胞外基质的细胞黏附和底物识别的相互作用。在这项研究中,我们研究了整合素 α2β1 对肌腱的影响,肌腱是肌肉骨骼系统中另一种富含 I 型胶原的组织。我们比较了野生型和整合素 α2β1 缺失型,从体内和体外分析了形态学和功能参数。与骨组织相似,缺乏整合素 α2β1 的肌腱细胞在体外产生更多的胶原。纤维形态和生物力学强度也发生了改变,因为整合素 α2β1 缺失导致体内纤维明显变小,动态 E 模量也发生变化。这种差异可以通过更高的胶原周转率来解释:整合素 α2β1 缺失的细胞产生更多的基质,并且肌腱中 I 型胶原的 C 端片段残留更多,基质金属蛋白酶-2 活性增加。非胶原蛋白的百分比大大降低可能是纤维直径调节变化和整合素缺失肌腱中胶原降解增加的原因。这些结果揭示了整合素 α2β1 对肌腱胶原修饰的显著影响。其在肌腱病变中的作用,如慢性降解,将是未来研究的主题。