首页> 外文期刊>The protein journal >Cyclic, linear, cycloretro-isomer, and cycloretro-inverso peptides derived from the C-terminal sequence of bradykinin as substrates or inhibitors of serine and cysteine proteases.
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Cyclic, linear, cycloretro-isomer, and cycloretro-inverso peptides derived from the C-terminal sequence of bradykinin as substrates or inhibitors of serine and cysteine proteases.

机译:源自缓激肽C端序列的环状,线性,环复古异构体和环复古逆向肽,它们是丝氨酸和半胱氨酸蛋白酶的底物或抑制剂。

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摘要

We investigated the inhibition of trypsin, human tissue (hK1) and human plasma kallikrein (HuPK), papain, and cathepsin L, B, and X by synthetic cyclic, cycloretro-isomer, cycloretro-inverso, and linear peptides derived from the C-terminal sequence of bradykinin. c(FSPFRG) and Ac-FSPFRG-NH2 were taken as the references for cyclic and linear peptides, respectively. Longer and more flexible analogs of them with addition of 2, 3, or 4 Gly and cycloretro-isomer and cycloretro-inverso analogs of c(FSPFRG) and c(GGGFSPFRG) were obtained and assayed. The susceptibility to hydrolysis of the peptides to all proteases was also examined. The highest affinities were found for c(FSPFRG) with hK1, Ac-GGFSPFRG-NH2 with HuPK, and psi (NHCO) c(fspfrG) with cathepsin L. The Ki values for cathepsin B and X with cyclic peptides were lower than those of linear peptides. The serine proteases hydrolyzed all linear and cyclic peptides, except c(FSPFRG) and c(GFSPFRG). The cysteine proteases hydrolyzed only the linear peptides, which were poor substrates. Although the Ki values obtained in the current work were in the microM range, the cyclic and cycloretro-inverso peptides seem to be a promising approach to develop efficient and resistant to hydrolysis inhibitors for the kallikreins and lysosomal cysteine proteases.
机译:我们研究了由C-衍生的合成环状,环复古异构体,环复古逆向异构体和线性肽对胰蛋白酶,人体组织(hK1)和人血浆激肽释放酶(HuPK),木瓜蛋白酶和组织蛋白酶L,B和X的抑制作用缓激肽的末端序列。 c(FSPFRG)和Ac-FSPFRG-NH2分别作为环状和线性肽的参考。获得并测定了添加了2、3或4 Gly的更长,更灵活的类似物以及c(FSPFRG)和c(GGGFSPFRG)的环复古异构体和环复古反型类似物。还检查了肽水解成所有蛋白酶的敏感性。发现c(FSPFRG)与hK1,Ac-GGFSPFRG-NH2与HuPK以及psi(NHCO)c(fspfrG)与组织蛋白酶L的亲和力最高。组织蛋白酶B和X的Ki值均低于环肽。线性肽。丝氨酸蛋白酶水解除c(FSPFRG)和c(GFSPFRG)以外的所有线性和环状肽。半胱氨酸蛋白酶仅水解作为不良底物的线性肽。尽管在当前工作中获得的Ki值在microM范围内,但是环状和环逆转肽似乎是开发有效且抗激激肽释放酶和溶酶体半胱氨酸蛋白酶水解抑制剂的有前途的方法。

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