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新型无色杆菌胶原酶及其与脊椎动物胶原酶的免疫学关系。

New Achromobacter collagenase and its immunological relationship with a vertebrate collagenase.

作者信息

Nguyen T T, Dumas J, Keil-Dlouha V

机构信息

Unité de chimie des protéines, Institut Pasteur, Paris, France.

出版信息

Biochim Biophys Acta. 1988 Jun 29;955(1):43-9. doi: 10.1016/0167-4838(88)90177-x.

Abstract

Evidence is presented that Achromobacter iophagus produces two distinct collagenases. Achromobacter collagenases A and B were separated by high-performance liquid chromatography from partially purified enzyme. The main collagenase, A (EC 3.4.24.8), which has been already described, was eluted in the region of molecular mass 110-90 kDa. A minor collagenase B eluted in the region of 320 kDa, although in SDS-gel electrophoresis the apparent molecular masses of its main active forms were estimated as 55 and 110 kDa. The specificities of collagenases A and B are different. Collagenase A splits in its synthetic substrate Pz-Pro-Leu-Gly-Pro-DArg the bond Leu-Gly, collagenase B does not split this substrate. Both collagenases split bonds Gln-Gly and Leu-Gly in synthetic peptides DNP-Pro-Gln-Gly-Ile-Ala-Gly-Gln-DArg-OH and DNP-Pro-Leu-Gly-Ile-Ala-Gly-DArg-NH2, respectively. Collagenase B is twice as active as A on the native collagen type I. Both enzymes are inhibited by EDTA. The antibodies raised against the human tooth collagenase specifically inhibited the collagenase B, but did not influence the activity of collagenase A. These results indicate, to our knowledge for the first time, an immunological relationship between a bacterial and a vertebrate collagenase.

摘要

有证据表明食菌无色杆菌可产生两种不同的胶原酶。通过高效液相色谱法从部分纯化的酶中分离出无色杆菌胶原酶A和B。主要的胶原酶A(EC 3.4.24.8)已被描述过,在分子量110 - 90 kDa区域洗脱。一种次要的胶原酶B在320 kDa区域洗脱,尽管在SDS凝胶电泳中其主要活性形式的表观分子量估计为55和110 kDa。胶原酶A和B的特异性不同。胶原酶A在其合成底物Pz - Pro - Leu - Gly - Pro - DArg中切割Leu - Gly键,胶原酶B不切割该底物。两种胶原酶分别在合成肽DNP - Pro - Gln - Gly - Ile - Ala - Gly - Gln - DArg - OH和DNP - Pro - Leu - Gly - Ile - Ala - Gly - DArg - NH2中切割Gln - Gly和Leu - Gly键。胶原酶B对天然I型胶原的活性是A的两倍。两种酶都受EDTA抑制。针对人牙胶原酶产生的抗体特异性抑制胶原酶B,但不影响胶原酶A的活性。据我们所知,这些结果首次表明了细菌胶原酶和脊椎动物胶原酶之间的免疫关系。

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