Dowling L M, Crewther W G, Inglis A S
Biochem J. 1986 Jun 15;236(3):695-703. doi: 10.1042/bj2360695.
Component 8c-1, one of four highly homologous component-8 subunit proteins present in the microfibrils of wool, was isolated as its S-carboxymethyl derivative and its amino acid sequence was determined. Large peptides were isolated after cleaving the protein chemically or enzymically and the sequence of each was determined with an automatic Sequenator. The peptides were ordered by sequence overlaps and, in some instances, by homology with known sequences from other component-8 subunits. The C-terminal residues were identified by three procedures. Full details of the various procedures used have been deposited as Supplementary Publication SUP 50133 (4 pp.) at the British Library Lending Division, Boston Spa, Wetherby, West Yorkshire LS23 7BQ, U.K., from whom copies can be obtained on the terms indicated in Biochem. J. (1986) 233, 5. The result showed that the protein comprises 412 residues and has an Mr, including the N-terminal acetyl group, of 48,300. The sequence of residues 98-200 of component 8c-1 was found to correspond to the partial or complete sequences of four homologous type I helical segments previously isolated from helical fragments recovered from chymotryptic digests of microfibrillar proteins of wool [Crewther & Dowling (1971) Appl. Polym. Symp. 18, 1-20; Crewther, Gough, Inglis & McKern (1978) Text. Res. J. 48, 160-162; Gough, Inglis & Crewther (1978) Biochem. J. 173, 385]. Considered in relation to amino acid sequences of other intermediate-filament proteins, the sequence is in accord with the view that keratin filament proteins are of two types [Hanukoglu & Fuchs (1983) Cell (Cambridge, Mass.) 33, 915-924]. Filament proteins from non-keratinous tissues, such as desmin, vimentin, neurofilament proteins and the glial fibrillary acidic protein, which form monocomponent filaments, constitute a third type. It is suggested that as a whole the proteins from intermediate filaments be classed as filamentins, the three types at present identified forming subgroups of this class. The significant homologies between types I, II and III occur almost exclusively in segments of the chain that have been identified as having a coiled-coil structure together with the relatively short sections connecting these segments. The non-coiled-coil segments at the C- and N-termini show no significant homology between types, nor is homology in these segments apparent in all members of one type. Component 8c-1 does not show homology in its terminal segments with the known sequence of any other filamentin.(ABSTRACT TRUNCATED AT 400 WORDS)
组分8c - 1是羊毛微原纤维中存在的四种高度同源的组分8亚基蛋白之一,以其S - 羧甲基衍生物形式被分离出来,并测定了其氨基酸序列。通过化学或酶切方法裂解该蛋白质后分离出大的肽段,并用自动测序仪测定每个肽段的序列。这些肽段通过序列重叠进行排序,在某些情况下,还通过与其他组分8亚基的已知序列进行同源性比较来排序。通过三种方法鉴定了C末端残基。所使用的各种方法的完整细节已作为补充出版物SUP 50133(4页)存放在英国西约克郡韦瑟比波士顿温泉市大英图书馆出借部,邮编LS23 7BQ,可按《生物化学杂志》(1986年)233卷第5期所示条件从该处获取复印件。结果表明该蛋白质由412个残基组成,包括N末端乙酰基在内的相对分子质量为48300。发现组分8c - 1的98 - 200位残基序列与先前从羊毛微原纤维蛋白的胰凝乳蛋白酶消化产物回收的螺旋片段中分离出的四个同源I型螺旋片段的部分或完整序列相对应[克鲁瑟和道林(1971年)《应用聚合物专题讨论会文集》18卷,1 - 20页;克鲁瑟、戈夫、英格利斯和麦肯(1978年)《纺织研究杂志》48卷,160 - 162页;戈夫、英格利斯和克鲁瑟(1978年)《生物化学杂志》173卷,385页]。与其他中间丝蛋白的氨基酸序列相比,该序列符合角蛋白丝蛋白有两种类型的观点[哈努科格卢和富克斯(1983年)《细胞》(马萨诸塞州剑桥)33卷,915 - 924页]。来自非角质组织的丝蛋白,如结蛋白、波形蛋白、神经丝蛋白和胶质纤维酸性蛋白,它们形成单组分丝,构成第三种类型。有人建议将中间丝的蛋白质整体归类为丝纤蛋白,目前确定的三种类型构成该类别的亚组。I型、II型和III型之间的显著同源性几乎完全出现在已被确定具有卷曲螺旋结构的链段以及连接这些链段的相对较短的区域。C末端和N末端的非卷曲螺旋链段在不同类型之间没有显著同源性,而且在一种类型的所有成员中这些链段的同源性也不明显。组分8c - 1在其末端链段与任何其他丝纤蛋白的已知序列均无同源性。(摘要截短于400字)