标题: 人类透明质酸水解脢和其抑制剂之研究开发
Study of Human Hyaluronidases and Screening Their Inhibitors
作者: 李耀坤
Li Yaw-Kuen
国立交通大学应用化学系(所)
关键字: 透明质酸;透明质酸水解.;蛋白质表现;萤光共振能转移;萤光量子点;抑制剂筛选;hyaluronan;hyaluroidase;expression;FRET;quantum dots;inhibitor screening
公开日期: 2009
摘要: Hyaluronidase(Hyal)已被广泛地应用在医疗上,但医药级Hyal 的供应却时常短缺。
因此,如何获得人类重组Hyal (recombinant human Hyal)已然成为一个重要且具价值的课
题。已有证据显示Hyal 可能有抗癌的效应并且能抑制肿瘤转移,不过,目前的结论却
相当不一致。例如Hyal-1 和Hyal-2 在不同的肿瘤里的具体功能似乎互相矛盾,且尚无
法解释其究理。所以,更进一步研究hyaluronidase 酵素活性与其对生理的影响,甚或是
开发具选择专一性和较强抑制能力的抑制剂,都是目前急迫的议题。此外,Hyal 抑制剂
除了可当作治疗arthroses 的医药物使用外,亦可结合抗生素,用在抗细菌治疗上,特别
是对可生产hyaluronate lyase 的细菌。虽然肝素 (heparin)、黄酮类化合物 (flavonoids) 和
全磺化(fully O-sulfonated)之glycosaminoglycans 已被发现在试管试验中(in vitro) 可抑制
牛睾丸之hyaluronidase (BTH) 活性。但是这些化合物仅具有微弱的抑制作用,所以到目
前为止,并没有较具潜力或选择性较高的抑制剂被发现。L-ascorbic acid 6-hexadecanoate
(Vcpal)是近年来被发现对BTH 具有有较佳的抑制效果的化合物,其IC50 为56 μM。我
们因此计画使用Vcpal 作为本研究之内标的物(“threshold” compound),透过competitive
binding technique 筛选出对哺乳动物Hyals 作用较强的抑制剂。这种competitive binding
technique 技术的发展将结合萤光共振能转移技术(FRET)。本研究亦将开发以FRET 技术
进行准确的酵素动力分析。此外,依据蜜蜂毒液中hyaluronidase 与HA 的四单元醣
(tetrasaccharide)碎片的蛋白质晶体结构,人类Hyal 的相似模组(homology models)可以利
用电脑模拟技术预测出来。这些蛋白模组将被实际应用于Hyal 抑制剂的筛选上。
计画案将于三年内执行,具体的主题包括∶
第1-第2 年
(1) 人类 Hyal-1 和Hyal-2 的基因重组和蛋白质表达
(2) 发展一种有效的方法分析 Hyal 的酵素活性
(3) 发展一以 FRET 为基础、筛选Hyal 抑制剂的平台
(4) 电脑模拟(structure simulation)人类Hyal-1 和Hyal-2 的蛋白质结构
(5) 合成玻尿酸衍生物作为 FRET 酵素分析的基质(substrate)
(6) 合成 Vcpal 的衍生物作为抑制剂的标的
第2-第3 年
(1) 筛选 Hyal 抑制剂
(2) 对筛选出的药物做抑制效应的定量评估
(3) 用化学修饰法增进抑制剂的抑制效果
(4) Hyals 的酵素特性分析和基因突变的研究
(5) 哺乳动物 Hyals 的酵素动力与催化机制的探讨
Hyaluronidase (Hyal) is widely used in medication. Owing to depleted supplies of
pharmaceutical Hyal, to obtain the recombinant human Hyal becomes an important issue and
valuable project. Evidences showed that Hyal may have intrinsic anticancer effects and can
suppress tumor progression. However, the findings are rather inconsistent. The specific
function of Hyal-1 and Hyal-2 in different tumors is still contradictory. To further investigate
the relationship of enzyme activity and the physiological effects of hyaluronidase, selective
and potent inhibitors are urgently required. Moreover Hyal inhibitors could be useful as drugs
in the treatment of arthroses or, combined with antibiotics, in antibacterial therapy of
hyaluronate lyase producing bacteria. Although heparin, flavonoids, and fully O-sulfonated
glycosaminoglycans have been reported to inhibit bovine testicular hyaluronidase (BTH) in
vitro, these compounds show only weak or partial inhibitory activity. No potent and selective
hyaluronidase inhibitors are known to date. L-ascorbic acid 6-hexadecanoate (Vcpal) was
recently examined as a better inhibitor of BTH with IC50 value of 56 μM. We plan to use
Vcpal as a “threshold” compound to screen powerful inhibitors for mammalian Hyals by
using competitive binding technique. The competitive binding technique will be developed in
combining with the Fluorescence Resonance Energy Transfer (FRET) technique. The FRET
technique will also be employed for accurate kinetic assay. Furthermore, the homology
models of human Hyals will be constructed based on the crystal structure of bee venom
hyaluronidase in complex with a HA tetrasaccharide fragment. These structures will be used
as the templates for virtual screening of Hyal inhibitor.
The project will be performed in 3 years with the following specific subjects:
1st - 2nd year
(1) Cloning and expression of human Hyal-1 and Hyal-2
(2) Developing an effective method for Hyal assay
(3) Developing the FRET-base platform for inhibitor screening
(4) Structure simulation of human Hyal-1 and Hyal-2
(5) Synthesis of hyaluronic acid derivative for enzymatic assay by FRET
(6) Synthesis of the derivatives of Vcpal as “threshold” inhibitor
2nd - 3rd year
(1) Screening of inhibitor
(2) Evaluation of inhibitory effect of screened drug
(3) Improvement of the potency of inhibitor by chemical modification
(4) Characterization and mutagenic study of Hyals
(5) Mechanistic action of mammalian Hyals
官方说明文件#: NSC96-2113-M009-012-MY3
URI: http://hdl.handle.net/11536/100951
https://www.grb.gov.tw/search/planDetail?id=1761072&docId=300711
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