The chemical reactivity and structure of collagen studied by neutron diffraction.

T J Wess, L Wess, A Miller
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引用次数: 1

Abstract

The chemical reactivity of collagen can be studied using neutron diffraction (a non-destructive technique), for certain reaction types. Collagen contains a number of lysine and hydroxylysine side chains that can react with aldehydes and ketones, or these side chains can themselves be converted to aldehydes by lysyl oxidase. The reactivity of these groups not only has an important role in the maintenance of mechanical strength in collagen fibrils, but can also manifest pathologically in the cases of aging, diabetes (reactivity with a variety of sugars) and alcoholism (reactivity with acetaldehyde). The reactivity of reducing groups with collagen can be studied by neutron diffraction, since the crosslink formed in the adduction process is initially of a Schiff base or keto-imine nature. The nature of this crosslink allows it to be deuterated, and the position of this relatively heavy scattering atom can be used in a process of phase determination by multiple isomorphous replacement. This process was used to study the following: the position of natural crosslinks in collagen; the position of adducts in tendon from diabetic rats in vivo and the in vitro position of acetaldehyde adducts in tendon.

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用中子衍射法研究了胶原蛋白的化学反应性和结构。
对于某些类型的反应,可以使用中子衍射(一种非破坏性技术)来研究胶原蛋白的化学反应性。胶原含有许多赖氨酸和羟赖氨酸侧链,这些侧链可以与醛类和酮类反应,或者这些侧链本身可以通过赖氨酸氧化酶转化为醛类。这些基团的反应性不仅在维持胶原原纤维的机械强度中起重要作用,而且在衰老、糖尿病(与各种糖的反应性)和酒精中毒(与乙醛的反应性)的病理情况下也能表现出来。由于在内合过程中形成的交联最初是席夫碱或酮亚胺性质的,因此还原基与胶原的反应性可以通过中子衍射来研究。这种交联的性质允许它被氘化,并且这种相对重的散射原子的位置可以用于通过多次同构置换来确定相的过程。该方法主要用于研究胶原蛋白中天然交联的位置;糖尿病大鼠肌腱加合物在体内的位置及乙醛加合物在体外的位置。
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