Mekanik och strukturell stabilitet hos collagen triple helix
- 01Kollagenets trippelhelix-struktur ger mekanisk stabilitet
- 02Den beter sig som en flexibel stav som kan böjas, vridas och sträckas
- 03Dess specifika aminosyrasekvens påverkar dess mekaniska egenskaper
Denna översikt undersöker hur kollagenets unika trippelhelix-struktur ger mekanisk stabilitet och stöd åt kroppens vävnader.
he primary building block of the body is collagen, which is found in the extracellular matrix and in many stress-bearing tissues such as tendon and cartilage. It provides elasticity and support to cells and tissues while influencing biological pathways including cell signaling, motility, and differentiation. Collagen's unique triple helical structure is thought to impart mechanical stability. However, detailed experimental studies on its molecular mechanics have been only recently emerging. Here, we review the treatment of the triple helix as a homogeneous flexible rod, including bend (standard worm-like chain model), twist, and stretch deformations, and the assumption of backbone linearity. Additionally, we discuss protein-specific properties of the triple helix including sequence dependence, and relate single-molecule mechanics to collagen's physiological context.
- APA
- Michael W H Kirkness, Kathrin Lehmann, & Nancy R Forde (2019). Mekanik och strukturell stabilitet hos collagen triple helix. https://fasciaresearchdatabase.com/mechanics-and-structural-stability-of-the-collagen-triple-helix/
- MLA
- Michael W H Kirkness, et al. "Mekanik och strukturell stabilitet hos collagen triple helix." 2019, https://fasciaresearchdatabase.com/mechanics-and-structural-stability-of-the-collagen-triple-helix/.
- Chicago
- Michael W H Kirkness, Kathrin Lehmann, Nancy R Forde. 2019. "Mekanik och strukturell stabilitet hos collagen triple helix.". https://fasciaresearchdatabase.com/mechanics-and-structural-stability-of-the-collagen-triple-helix/
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