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1
Synthetic chimeras of mouse growth factor-associated glandular kallikreins. I. Kinetic properties.小鼠生长因子相关腺激肽释放酶的合成嵌合体。I. 动力学特性。
Protein Sci. 1993 Aug;2(8):1210-9. doi: 10.1002/pro.5560020803.
2
Synthetic chimeras of mouse growth factor-associated glandular kallikreins. II. Growth factor binding properties.小鼠生长因子相关腺激肽释放酶的合成嵌合体。II. 生长因子结合特性。
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3
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4
Prediction of the three-dimensional structures of the nerve growth factor and epidermal growth factor binding proteins (kallikreins) and an hypothetical structure of the high molecular weight complex of epidermal growth factor with its binding protein.神经生长因子和表皮生长因子结合蛋白(激肽释放酶)三维结构的预测以及表皮生长因子与其结合蛋白高分子量复合物的假设结构。
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5
beta-NGF-endopeptidase: structure and activity of a kallikrein encoded by the gene mGK-22.β-神经生长因子内肽酶:由基因mGK-22编码的一种激肽释放酶的结构与活性
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6
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Does the Kunitz domain from the Alzheimer's amyloid beta protein precursor inhibit a kallikrein responsible for post-translational processing of nerve growth factor precursor?阿尔茨海默病淀粉样β蛋白前体中的Kunitz结构域是否会抑制一种负责神经生长因子前体翻译后加工的激肽释放酶?
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8
Mouse glandular kallikrein genes: identification and characterization of the genes encoding the epidermal growth factor binding proteins.小鼠腺体激肽释放酶基因:编码表皮生长因子结合蛋白的基因的鉴定与表征
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9
The role of kallikreins in growth factor processing: the kallikrein gene family from the African rodent Mastomys.激肽释放酶在生长因子加工中的作用:来自非洲啮齿动物多乳鼠的激肽释放酶基因家族。
Braz J Med Biol Res. 1994 Aug;27(8):1885-90.
10
The relationship between glandular kallikrein and growth factor-processing proteases of mouse submaxillary gland.小鼠颌下腺中腺激肽释放酶与生长因子加工蛋白酶之间的关系。
J Biol Chem. 1979 Aug 10;254(15):7287-94.

引用本文的文献

1
Prediction of the three-dimensional structures of the nerve growth factor and epidermal growth factor binding proteins (kallikreins) and an hypothetical structure of the high molecular weight complex of epidermal growth factor with its binding protein.神经生长因子和表皮生长因子结合蛋白(激肽释放酶)三维结构的预测以及表皮生长因子与其结合蛋白高分子量复合物的假设结构。
Protein Sci. 1993 Aug;2(8):1229-41. doi: 10.1002/pro.5560020805.

本文引用的文献

1
Prediction of the three-dimensional structures of the nerve growth factor and epidermal growth factor binding proteins (kallikreins) and an hypothetical structure of the high molecular weight complex of epidermal growth factor with its binding protein.神经生长因子和表皮生长因子结合蛋白(激肽释放酶)三维结构的预测以及表皮生长因子与其结合蛋白高分子量复合物的假设结构。
Protein Sci. 1993 Aug;2(8):1229-41. doi: 10.1002/pro.5560020805.
2
The amino acid sequence of the gamma-subunit of mouse submaxillary gland 7 S nerve growth factor.小鼠颌下腺7S神经生长因子γ亚基的氨基酸序列。
J Biol Chem. 1981 Sep 10;256(17):9156-66.
3
Human beta-nerve growth factor gene sequence highly homologous to that of mouse.人类β-神经生长因子基因序列与小鼠的高度同源。
Nature. 1983 Jun 30;303(5920):821-5. doi: 10.1038/303821a0.
4
Structure of a mouse submaxillary messenger RNA encoding epidermal growth factor and seven related proteins.编码表皮生长因子及七种相关蛋白的小鼠颌下信使核糖核酸的结构
Science. 1983 Jul 15;221(4607):236-40. doi: 10.1126/science.6602382.
5
Structure of mouse kallikrein gene family suggests a role in specific processing of biologically active peptides.小鼠激肽释放酶基因家族的结构表明其在生物活性肽的特定加工过程中发挥作用。
Nature. 1983 May 26;303(5915):300-7. doi: 10.1038/303300a0.
6
Refined 2 A X-ray crystal structure of porcine pancreatic kallikrein A, a specific trypsin-like serine proteinase. Crystallization, structure determination, crystallographic refinement, structure and its comparison with bovine trypsin.精制的猪胰激肽释放酶A的X射线晶体结构,一种特异性胰蛋白酶样丝氨酸蛋白酶。结晶、结构测定、晶体学精制、结构及其与牛胰蛋白酶的比较。
J Mol Biol. 1983 Feb 25;164(2):237-82. doi: 10.1016/0022-2836(83)90077-3.
7
Isolation of a cDNA clone coding for the gamma-subunit of mouse nerve growth factor using a high-stringency selection procedure.利用高严格度筛选程序分离编码小鼠神经生长因子γ亚基的cDNA克隆。
DNA. 1984 Oct;3(5):387-92. doi: 10.1089/dna.1984.3.387.
8
Mouse 7S nerve growth factor: complete sequence of a cDNA coding for the alpha-subunit precursor and its relationship to serine proteases.小鼠7S神经生长因子:编码α亚基前体的cDNA完整序列及其与丝氨酸蛋白酶的关系。
Biochemistry. 1984 Dec 4;23(25):5997-6002. doi: 10.1021/bi00320a015.
9
Nucleotide sequence of epidermal growth factor cDNA predicts a 128,000-molecular weight protein precursor.表皮生长因子互补脱氧核糖核酸的核苷酸序列预测出一种分子量为128,000的蛋白质前体。
Nature. 1983;303(5919):722-5. doi: 10.1038/303722a0.
10
The isolation of the mouse nerve growth factor protein in a high molecular weight form.以高分子量形式分离小鼠神经生长因子蛋白。
Biochemistry. 1967 Jul;6(7):2202-9. doi: 10.1021/bi00859a043.

小鼠生长因子相关腺激肽释放酶的合成嵌合体。I. 动力学特性。

Synthetic chimeras of mouse growth factor-associated glandular kallikreins. I. Kinetic properties.

作者信息

Blaber M, Isackson P J, Burnier J P, Marsters J C, Bradshaw R A

机构信息

Department of Biological Chemistry, College of Medicine, University of California, Irvine 92717.

出版信息

Protein Sci. 1993 Aug;2(8):1210-9. doi: 10.1002/pro.5560020803.

DOI:10.1002/pro.5560020803
PMID:8401206
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2142431/
Abstract

A series of six chimeric proteins, composed of fragments corresponding to either one or the other of the growth factor-associated mouse glandular kallikreins-epidermal growth factor binding protein (EGF-BP) and the gamma-subunit of nerve growth factor (gamma-NGF)--were expressed in Escherichia coli and isolated, and their kinetic properties were characterized. The assembly of these synthetic proteases involved the substitution of regions of the proteins containing four specific surface loops that have been postulated to influence both kinetic specificity and the formation of growth factor complexes. The substrates utilized in the kinetic characterization of these chimeric kallikreins were tripeptide nitroanilides representing carboxyl termini of both the EGF and beta-NGF mature hormones, putative processing sites for these kallikreins in the precursors. Characterization of these hybrid enzymes demonstrates that Km and kcat kinetic constants may be independently affected by the regions utilized in construction of these chimeric kallikreins. Specifically, loop 1, located in the amino terminal region (Bode, W., et al., J. Mol. Biol. 164, 237-282, 1983), in gamma-NGF enhanced the kcat for substrates containing threonine in the P2 position, as is the case during the processing of the carboxy terminus of the beta-NGF precursor. Also, the central regions of the kallikreins containing loop 2 and the kallikrein loop dictated the generally inverted Km and kcat kinetic constants observed between EGF-BP and gamma-NGF. Finally, in gamma-NGF the autolysis loop, found in the carboxyl terminal region, functions to lower the Km kinetic constant for a variety of substrates. The results allow previously characterized kinetic differences between EGF-BP and gamma-NGF to be interpreted in terms of specific regions of the proteins and identify a subset of amino acid positions responsible for these functional characteristics.

摘要

一系列六种嵌合蛋白由与生长因子相关的小鼠腺体激肽释放酶 - 表皮生长因子结合蛋白(EGF - BP)和神经生长因子γ亚基(γ - NGF)中的一种或另一种对应的片段组成,在大肠杆菌中表达并分离出来,对其动力学特性进行了表征。这些合成蛋白酶的组装涉及蛋白质中包含四个特定表面环的区域的替换,据推测这些环会影响动力学特异性和生长因子复合物的形成。在这些嵌合激肽释放酶的动力学表征中使用的底物是代表EGF和β - NGF成熟激素羧基末端的三肽硝基苯胺,这些激肽释放酶在前体中的假定加工位点。对这些杂合酶的表征表明,Km和kcat动力学常数可能会受到用于构建这些嵌合激肽释放酶的区域的独立影响。具体而言,位于氨基末端区域的环1(Bode,W.等人,《分子生物学杂志》164,237 - 282,1983),在γ - NGF中增强了对P2位置含有苏氨酸的底物的kcat,就像在β - NGF前体羧基末端加工过程中的情况一样。此外,含有环2的激肽释放酶的中心区域和激肽释放酶环决定了在EGF - BP和γ - NGF之间观察到的通常相反的Km和kcat动力学常数。最后,在γ - NGF中,位于羧基末端区域的自溶环起到降低多种底物的Km动力学常数的作用。这些结果使得先前表征的EGF - BP和γ - NGF之间的动力学差异能够根据蛋白质的特定区域进行解释,并确定了负责这些功能特性的氨基酸位置子集。