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Normal and Shear Forces between Surfaces Bearing Porcine Gastric Mucin, a High-Molecular-Weight Glycoprotein

机译:带有猪胃粘蛋白(一种高分子量糖蛋白)的表面之间的法向力和剪切力

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摘要

A surface force balance was used to measure the normal and shear forces between two mica surfaces each bearing an adsorbed layer of porcine gastric mucin ("Orthana" mucin), genetically similar to human MUC6. This mucin is a highly purified, 546 kDa, weakly negative, polyampholytic molecule with a "dumbbell" structure. Both bare (HP) and hydrophobized (HB) mica substrates were used, and forces were measured under 1 and 30 mg/rnL mucin solutions, under pure (no-added-salt) water, and under 0.1 M aqueous Na~+ solution. Normal surface forces were monotonically repulsive in all cases, with onset of repulsion occurring at smaller surface separations, D, in the 0.1M salt solutions (~20 nm, compared with ~40 nm for no added salt). Repulsion on HP mica was greater on surface compression than decompression, an effect, attributed to bridging and slow-relaxing additional adsorption on compression, not seen on HB mica, a difference attributed to the denser coverage of mucin hydrophobic moieties on the HB surface. Friction forces increased with compression in all cases, showing hysteretic behavior on HP but not on HB mica, commensurate with the hysteresis observed in the normal measurements. Low friction coefficients μ (= partial deriv F_s/partial derivF_n < 0,05) were seen up to mean pressures

≈ 0.5 to 1.0 MPa, attributed to low interpenetration of the opposed layers together with hydration lubrication effects, with higher μ (up to 0.4) at higher

attributed to interlayer entanglements and to bridging (for the case of HP mica). Shear forces increased only weakly with sliding speed over the range investigated (80—820 nm s~(-1)). The lower friction with HB relative to HP mica suggests a selectivity of the HB surface to the hydrophobic moieties of the mucin that in consequence exposes relatively more of the better-lubricating hydrophilic groups. This surface-selectivity effect on lubrication may have a generality extending to other biological macromolecules that contain both hydrophilic and hydrophobic groups.

机译:使用表面力平衡来测量两个云母表面之间的法向力和剪切力,每个云母表面均带有猪胃粘蛋白(“ Orthana”粘蛋白)的吸附层,在遗传上与人MUC6相似。该粘蛋白是具有“哑铃”结构的高度纯化的546 kDa弱阴性多ampholytic分子。分别使用了裸露的(HP)云母和疏水化的(HB)云母基材,并在1和30 mg / mL粘蛋白溶液,纯净(无添加盐)水和0.1 M Na +水溶液中测量了力。在所有情况下,正常的表面力都是单调排斥的,排斥发生在较小的表面间距D(在0.1M盐溶液中(约20 nm,而没有添加盐时为约40 nm))。 HP云母在表面压缩上的排斥力比减压好,这是由于桥接和缓慢释放附加的压缩吸附作用,而在HB云母上则没有,差异是由于粘蛋白疏水性部分在HB表面上的覆盖较密。在所有情况下,摩擦力均随压缩而增加,在HP上显示出磁滞行为,但在HB云母上却没有,这与正常测量中观察到的磁滞相当。低摩擦系数μ(=偏导数F_s /偏导数F_n <0.05)达到平均压力

≈0.5至1.0 MPa,这归因于相对层的互穿程度低以及水合润滑效果,而μ(最高

时最高可达0.4),这归因于层间缠结和桥接(对于HP云母而言)。在所研究的范围内(80-820 nm s〜(-1)),剪切力仅随滑动速度而微弱增加。相对于HP云母,HB与HB的摩擦较小,表明HB表面对粘蛋白的疏水部分具有选择性,因此暴露了相对较多的润滑性更好的亲水基团。这种对润滑的表面选择性作用可能具有普遍性,可以扩展到同时包含亲水基团和疏水基团的其他生物大分子。

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