Mauney Josh, Volloch Vladimir
Children's Hospital, Boston, MA, USA.
Matrix Biol. 2009 Jun;28(5):239-50. doi: 10.1016/j.matbio.2009.04.003. Epub 2009 Apr 16.
Adult human bone marrow stromal cells (BMSCs) containing or consisting of mesenchymal stem cells (MSCs) are an important source in tissue homeostasis and repair. Although many processes involved in their differentiation into diverse lineages have been deciphered, substantial inroads remain to be gained to synthesize a complete regulatory picture. The present study suggests that structural conformation of extracellular collagen I, the major organic matrix component in musculoskeletal tissues, plays, along with differentiation stimuli, a decisive role in the selection of differentiation lineage. It introduces a novel concept which proposes that structural transition of collagen I matrix regulates cell differentiation through distinct signaling pathways specific for the structural state of the matrix. Thus, on native collagen I matrix inefficient adipogenesis is p38-independent, whereas on its denatured counterpart, an efficient adipogenesis is primarily regulated by p38 kinase. Inversely, osteogenic differentiation occurs efficiently on native, but not on denatured collagen I matrix, with a low commencement threshold on the former and a substantially higher one on the latter. Osteogenesis on collagen I matrices in both structural conformations is fully dependent on ERK. However, whereas on native collagen I matrix osteogenic differentiation is Hsp90-dependent, on denatured collagen I matrix it is Hsp90-independent. The matrix conformation-mediated regulation appears to be one of the mechanisms determining differentiation lineage of BMSCs. It allows a novel interpretation of the bone remodeling cycle, explains the marked physiological aging-related adipogenic shift in musculoskeletal tissues, and can be a principal contributor to adipogenic shift seen in a number of clinical disorders.
含有间充质干细胞(MSC)或由其组成的成人骨髓基质细胞(BMSC)是组织稳态和修复的重要来源。尽管已经破译了许多参与其向不同谱系分化的过程,但要合成完整的调控图景仍有很大进展空间。本研究表明,细胞外I型胶原蛋白(肌肉骨骼组织中的主要有机基质成分)的结构构象与分化刺激一起,在分化谱系的选择中起决定性作用。它引入了一个新概念,即I型胶原蛋白基质的结构转变通过针对基质结构状态的不同信号通路调节细胞分化。因此,在天然I型胶原蛋白基质上,低效的脂肪生成不依赖p38,而在其变性对应物上,高效的脂肪生成主要由p38激酶调节。相反,成骨分化在天然I型胶原蛋白基质上有效发生,而在变性I型胶原蛋白基质上则不然,前者的起始阈值低,后者则高得多。两种结构构象的I型胶原蛋白基质上的成骨作用完全依赖于ERK。然而,在天然I型胶原蛋白基质上,成骨分化依赖于Hsp90,而在变性I型胶原蛋白基质上则不依赖Hsp90。基质构象介导的调节似乎是决定BMSC分化谱系的机制之一。它为骨重塑周期提供了一种新的解释,解释了肌肉骨骼组织中与生理衰老相关的明显脂肪生成转变,并且可能是许多临床疾病中脂肪生成转变的主要原因。