Chang J Y, Alkan S S, Hilschmann N, Braun D G
Eur J Biochem. 1985 Sep 2;151(2):225-30. doi: 10.1111/j.1432-1033.1985.tb09092.x.
Selective cleavage of polypeptides by alpha-thrombin can be reasonably predicted [Chang, J.Y. (1985) Eur. J. Biochem. 151,217-224]. This knowledge was applied to the selective cleavage of antibody light chains with the aim of producing intact fragments of both variable region and constant region. (a) Mouse kappa light chains 10K26 and 10K44 from anti-(azobenzene arsonate) antibodies contain 20 Arg/Lys-Xaa bonds. Only two of them, one ProArg-Thr bond located at the joint of the variable region with the joining peptide and one ValLys-Ser bond located near the carboxyl-terminal end of the constant region, were selectively cleaved by alpha-thrombin. The ProArg-Thr bond has a 50% cleavage time of about 10 min under the designated conditions, whereas the ValLys-Ser has a 50% cleavage time approx. 9-10 h. A single selective cleavage at the joining position of the variable region and joining peptide can be achieved by short-time thrombin digestion. Fragments containing intact variable region (1-96) and intact joining peptide-constant region (97-214) obtained from both denatured and native light chains of 10K26 can be separated by gel filtration. (b) lambda light chains from both human and mouse all begin with the GlnProLys-(Ala/Ser) structure (positions 108-111) at their constant regions. This ProLys-Ala/Ser bond is also susceptible to specific thrombin cleavage. Four human lambda chain (KERN, NEI, NEW, VOR) and one mouse lambda chain (RPC20) were shown to be selectively cleaved by thrombin at these ProLys-Ala/Ser bonds. For human lambda chains, the 50% cleavage time at this ProLys-Ala bond was approx. 3-4 h under the designated conditions. Six additional thrombin specific cleavages were also detected within the variable regions of NEI, VOR and RPC-20. (c) Heparin inhibits thrombin cleavage of Arg/Lys-Xaa bonds located near the center of the antibody light chain, but slightly activates thrombin cleavage of those located near the amino or carboxyl-terminal ends of the protein. The significance of these findings is threefold. (a) It demonstrates that selective cleavage of large polypeptides by alpha-thrombin can also be reasonably predicted. (b) It provides a useful method for light chain fragmentation which can greatly facilitate amino acid sequencing of antibodies. (c) It serves to generate fragments containing intact variable regions and constant regions from antibody light chains of human and mouse. Such fragments may be useful for chemical semisynthesis of a human-mouse light chain chimeras.
α-凝血酶对多肽的选择性切割是可以合理预测的[张,J.Y.(1985年)《欧洲生物化学杂志》151,217 - 224]。这一知识被应用于抗体轻链的选择性切割,目的是产生可变区和恒定区的完整片段。(a)来自抗(偶氮苯砷酸盐)抗体的小鼠κ轻链10K26和10K44含有20个精氨酸/赖氨酸-Xaa键。其中只有两个键,一个位于可变区与连接肽连接处的脯氨酸-精氨酸-苏氨酸键,以及一个位于恒定区羧基末端附近的缬氨酸-赖氨酸-丝氨酸键,被α-凝血酶选择性切割。在指定条件下,脯氨酸-精氨酸-苏氨酸键的50%切割时间约为10分钟,而缬氨酸-赖氨酸-丝氨酸键的50%切割时间约为9 - 10小时。通过短时间的凝血酶消化,可以在可变区和连接肽的连接位置实现单次选择性切割。从10K26的变性和天然轻链中获得的含有完整可变区(1 - 96)和完整连接肽-恒定区(97 - 214)的片段可以通过凝胶过滤分离。(b)人和小鼠的λ轻链在其恒定区均以谷氨酰胺-脯氨酸-赖氨酸-(丙氨酸/丝氨酸)结构(位置108 - 111)开始。这个脯氨酸-赖氨酸-丙氨酸/丝氨酸键也易受凝血酶的特异性切割。四种人λ链(KERN、NEI、NEW、VOR)和一种小鼠λ链(RPC20)被证明在这些脯氨酸-赖氨酸-丙氨酸/丝氨酸键处被凝血酶选择性切割。对于人λ链,在指定条件下,这个脯氨酸-赖氨酸键的50%切割时间约为3 - 4小时。在NEI、VOR和RPC - 20的可变区内还检测到另外六个凝血酶特异性切割位点。(c)肝素抑制位于抗体轻链中心附近的精氨酸/赖氨酸-Xaa键的凝血酶切割,但略微激活位于蛋白质氨基或羧基末端附近的那些键的凝血酶切割。这些发现的意义有三个方面。(a)它表明α-凝血酶对大多肽的选择性切割也是可以合理预测的。(b)它为轻链片段化提供了一种有用的方法,这可以极大地促进抗体的氨基酸测序。(c)它有助于从人和小鼠的抗体轻链中产生含有完整可变区和恒定区的片段。这样的片段可能有助于人-小鼠轻链嵌合体的化学半合成。