KR20060009902A - 글루타미닐 및 글루타메이트 사이클라제의 이펙터의 용도 - Google Patents
글루타미닐 및 글루타메이트 사이클라제의 이펙터의 용도 Download PDFInfo
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- KR20060009902A KR20060009902A KR1020057021071A KR20057021071A KR20060009902A KR 20060009902 A KR20060009902 A KR 20060009902A KR 1020057021071 A KR1020057021071 A KR 1020057021071A KR 20057021071 A KR20057021071 A KR 20057021071A KR 20060009902 A KR20060009902 A KR 20060009902A
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Abstract
Description
| 아미노산 | 일문자 기호 | 세문자 기호 |
| 알라닌 | A | Ala |
| 아르기닌 | R | Arg |
| 아스파라긴 | N | Asn |
| 아스파트산 | D | Asp |
| 시스테인 | C | Cys |
| 글루타민 | Q | Gln |
| 글루탐산 | E | Glu |
| 글리신 | G | Gly |
| 히스티딘 | H | His |
| 이소루이신 | I | lle |
| 루이신 | L | Leu |
| 리신 | K | Lys |
| 메티오닌 | M | Met |
| 페닐알라닌 | F | Phe |
| 프롤린 | P | Pro |
| 세린 | S | Ser |
| 트레오닌 | T | Thr |
| 트립토판 | W | Trp |
| 타이로신 | Y | Tyr |
| 발린 | V | Val |
| 기질 | 사람 QC | 파파야 QC | ||||
| KM (μM) | kcat (s-1) | kcat (mM-1s-1) | KM (μM) | kcat (s-1) | kcat/KM (mM-1s-1) | |
| [Gln1]-가스트린 | 31±1 | 54±0.6 | 1745.2±36.9 | 34±2 | 25.8±0.5 | 759±30 |
| [Gln1]-뉴로텐신 | 37±1 | 48.8±0.4 | 1318.9±24.8 | 40±3 | 357.7±0.9 | 893±44 |
| [Gln1]-FPP | 87±2 | 69.6±0.3 | 800.0±14.9 | 232±9 | 32.5±0.4 | 140±4 |
| [Gln1]-TRH | 90±4 | 82.8±1.2 | 920.0±27.6 | n.d | n.d. | n.d. |
| [Gln1]-GnRH | 53±3 | 69.2±1.1 | 1305.7±53.2 | 169±9 | 82.5±1.9 | 488.2±14.8 |
| [Gln3]-글루카곤(3-29) | * | * | ||||
| [Gln3]-서브스탄스 P (5-11) | * | * | ||||
| 펩타이드 | 아미노산 서열 | 기능 |
| 가스트린 17 Swiss-Prot:P01350 | QGPWL EEEEEAYGWM DF(아마이드) | 가스트린은 위점막을 자극하여 염산을 생성 분비하고 판크레아스를 자극하여 그것의 소화효소를 분비하게 한다. 또한 위와 장에서 평활근 수축을 자극하고 혈액 순환 및 물 분비를 증가시킨다. |
| 뉴로텐신 | QLYENKPRRP YIL | 뉴로텐신은 지방 대사 조절에서 내분비 또는 방분비(paracrine) 역할을 한다. 평활근의 수축을 야기한다 |
| FPP | QEP 아마이드 | 타이로트로핀 방출 호르몬 (TRH)과 관계있는 트리펩타이드는 정액에서 발견된다. 최근 FPP가 시험관내 및 생체내에서 정자 생식능력을 조절하는데 중요한 역할을 한다는 증거가 있다 |
| TRH | QHP 아마이드 | TRH는 뇌하수체 전엽 선에서 TSH의 생합성 조절자로서 및 중추 및 말초 신경계의 신경전달자/신경조절자로서 작용한다 |
| GnRH Swiss-Prot : P01 148 | QHWSYGL RP(G) 아마이드 | 고나도트로핀(gonadotropin)의 분비를 자극; 황체형성 호르몬 및 여포자극호르몬 둘 다의 분비를 자극한다. |
| CCL16 (유도성의 작은 사이토카인 A16) Swiss-Prot:015467 | QPKVPEW VNTPSTCCLK YYEKVLPRRL VVGYRKALNC HLPAIIFVTK RNREVCTNPN DDWVQEYIKD PNLPLLPTRN LSTVKIITAK NGQPQLLNSQ | 임파구와 단핵구에 대해서 화학주성 활성을 보이나 호중구에 대해서는 그렇치 않음. 또한 강력한 골수억제(myelosuppressive) 활성을 보임, 골수모세포의 증식 억제. 재조합 SCYA16는 단핵구 및 THP-1 단핵구에 대해 화학주성 활성을 보이나 휴지 임파구 및 호중구에 대해서는 그렇지 않다. RANTES로 미리 발현시켜 탈감작된 THP-1 세포에서 칼슘 유동을 유도 |
| CCL8 (유도성의 작은 사이토카인 A8) Swiss-Prot: P80075 | QPDSVSI PITCCFNVIN RKIPIQRLES YTRITNIQCP KEAVIFKTKR GKEVCADPKE RWVRDSMKHL DQIFQNLKP | 임파구, 호염기구 및 호산구를 유인하는 화학주성 인자. 신생물 형성 및 염증성 숙주 반응에 역할 담담. 이 단백질은 헤파린과 결합할수 있다 |
| CCL2 (유도성의 작은 사이토카인 A2) Swiss-Prot: P13500 | QPDAINA PVTCCYNFTN RKISVQRLAS YRRITSSKCP KEAVIFKTIV AKEICADPKQ KWVQDSMDHL DKQTQTPKT | 단핵구 및 호염기구를 유인하는 호중구 또는 호산구는 그렇지 않은 화학주성 인자. 단핵구 항종양 활성을 증가. 건선, 류마티스 관절염 또는 아테롬성 동맥경화증같은 단핵구성 침윤으로 특징되는 질병의 병리에 연루됨. 아테롬성 동맥경화증의 질병 진행중에 단핵구를 동맥 벽에 끌어다 놓는데 역할 가능성. CCR2 및 CCR4과 결합. |
| CCL18 유도성의 작은 사이토카인A18) Swiss-Prot : P55774 | QVGTNKELC CLVYTSWQIP QKFIVDYSET SPQCPKPGVI LLTKRGRQIC ADPNKKWVQK YISDLKLNA | 임파구를 유인하지만 단핵구나 과립구는 그렇지 않은 화학주성 인자. 림프절에서 B 세포가 B 세포 낭으로 이동하는 데 연루 가능성. 림프절에서, 순전한 T 임파구를 수지상 세포 및 활성화된 대식세포 쪽으로 유인하고, 순전한 T 세포, CD4+ 및 CD8+ T 세포에 대해서 화학주성 활성을 가지고 따라서 체액성 및 세포-매개성 면역 반응에서 역할한다. |
| 프랙탈킨 (neurotactin) Swiss-Prot: P78423 | QHHGVT KCNITCSKMT SKIPVALLIH YQQNQASCGK RAIILETRQH RLFCADPKEQ WVKDAMQHLD RQAAALTRNG GTFEKQIGEV KPRTTPAAGG MDESWLEPE ATGESSSLEP TPSSQEAQRA LGTSPELPTG VTGSSGTRLP PTPKAQDGGP VGTELFRVPP VSTAATWQSS APHQPGPSLW AEAKTSEAPS TQDPSTQAST ASSPAPEENA PSEGQRVWGQ GQSPRPENSL EREEMGPVPA HTDAFQDWGP GSMAHVSVVP VSSEGTPSRE PVASGSWTPK AEEPIHATMD PQRLGVLITP VPDAQAATRR QAVGLLAFLG LLFCLGVAMF TYQSLQGCPR KMAGEMAEGL RYIPRSCGSN SYVLVPV | 용해 형태는 T 세포 및 단핵구에 대해서는 화학주성이지만 호중구에 대해서는 그렇지 않다. 막 결합 형태는 백혈구를 내포 세포로 흡착시키는 것을 촉진. 내피세포에서 백혈구 흡착 및 이동 과정에 역할. cx3cr1와 결합 |
| CCL7 (유도성의 작은 사이토카인A7) Swiss-Prot : P80098 | QPVGINT STTCCYRFIN KKIPKQRLES YRRTTSSHCP REAVIFKTKL DKEICADPTQ KWVQDFMKHL DKKTQTPKL | 단핵구 및 호염기구를 유인하지만 호중구는 그렇지 않은 화학주성 인자. 단핵구 항 종양 활성을 증가. 또한 젤라티나제 B의 방출을 유도. 이 단백질은 헤파린과 결합가능. CCR1, CCR2 및 CCR3와 결합. |
| Orexin A (Hypocretin-1) Swiss-Prot 043612 | QPLPDCCRQK TCSCRLYELL HGAGNHAAGI LTL | 대개는 이러한 상보적 항상성 기능의 복잡한 거동적 및 생리적 반응을 조화롭게 함으로써 음식 섭취 및 수면-각성 상태를 조절하는데 중요한 역할을 하는 신경펩타이드. 그것은 또한 에너지 대사, 자율신경 기능, 호르몬 균형, 및 체액 조절에서 또한 역할을 수행한다. 에너지 대사, 자율신경 기능, 호르몬 균형 및 체액 조절에서광범위한 역할을 담당. 오렉신-A 높은 친화력으로 OX1 R 및 OX2R 둘 다와 결합한다. |
| 서브스탄스 P | RPK PQQFFGLM | 타치키닌의 종류. 타치키닌은 뉴런을 흥분시키고, 거동 반응을 일깨우는 활성 펩타이드로서 강력한 혈관 확장제 및 인슐린분비촉진제(secretagogues)이고 많은 평활근을 (직접 또는 간접적으로) 수축시킨다. |
| 화합물 | Ki-값(mM) | 구조 |
| 중심 구조체 | ||
| 이미다졸 | 0.103±0.004 | |
| 벤즈이미다졸 | 0.138±0.005 | |
| N-1 유도체류 | ||
| 1-벤질이미다졸 | 0.0071±0.0003 | |
| 1-메틸이미다졸 | 0.030±0.001 | |
| 1-비닐이미다졸 | 0.049±0.002 | |
| 옥살산 디이미다졸리다이드 | 0.078±0.002 | |
| N-아세틸이미다졸 | 0.107±0.003 | |
| N-(트리메틸실릴)-이미다졸 | 0.167±0.007 | |
| N-벤조일이미다졸 | 0.174±0.007 | |
| 1-(2-옥소-2-페닐-에틸)-이미다졸 | 0.184±0.005 | |
| 1-(3-아미노프로필)-이미다졸 | 0.41± 0.01 | |
| 1-페닐이미다졸 | 억제없음 | |
| 1,1'-설포닐디이미다졸 | 억제없음 | |
| C-4(5) 유도체류 | ||
| N-오메가-아세틸히스타민 | 0.017±0.001 | |
| L-히스티딘아미드 | 0.56±0.04 | |
| H-His-Trp-OH | 0.60±0.03 | |
| L-히스티디놀 | 1.53±0.12 | |
| L-히스티딘 | 4.4±0.2 | |
| 4-이미다졸-카르복스 알데히드 | 7.6±0.7 | |
| 이미다졸-4-카르본산 | 14.5±0.6 | |
| 메틸 에스테르 L-히스타민 | 0.85±0.04 | |
| C-4,5 유도체류 | ||
| 5-하이드록시메틸-4-메틸-이미다졸 | 0.129±0.005 | |
| 4-아미노-이미다졸-5-카르본 산 아미드 | 15.5±0.5 | |
| 4,5-디페닐-이미다졸 | 억제없음 | |
| 4,5-디시아노이미다졸 | 억제없음 | |
| C-2 유도체류 | ||
| 2-메틸-벤질이미다졸 | 0.165±0.004 | |
| 2-에틸-4-메틸-이미다졸 | 0.58±0.04 | |
| 2-아미노벤즈이미다졸 | 1.8±0.1 | |
| 2-클로로-1H-벤즈이미다졸 | 억제없음 | |
| 기타 | ||
| 3-(1H-이미다졸-1-일)-1-(3-메틸벤조[b]티오펜-2-일)프로판-1-온 | 0.0025±0.0001 | |
| 4-[(1-메틸-1H-이미다졸-5-일)메틸]-3-프로필디하이드로퓨란-2-(3H)-온 | 0.0067±0.0003 | |
| 4-[2-(1H-이미다졸-1-일)-에톡시]벤조산 | 0.0034±0,0001 | |
| 3-[3-(1H-이미다졸-1-일)프로필]-2-티옥소이미다졸리딘-4-온 | 0.00041±0.00001 | |
| 5-니트로-2-[2-([{3-(1H-이미다졸-1-일-)프로필}아미노]카르보닐)페닐]푸라미드 | 0.0066±0,0004 | |
| N-(4-클로로페닐)-N'-[2-(1H-이미다졸- 1-일)에틸]티오우레아 | 0.00165±0.00007 | |
| 0.0322±0.0007 | ||
| n.d. | ||
| 이미다조<1.5a>피리딘 | 0.0356±0.0005 | |
| 메틸 (2S)-2-{[(2S)-2-아미노-5-(1H-이미다졸-1-yl아미노)-5-옥소펜타노일]아미노}-3-메틸부타노에이트 | 0.164±0.004 | |
| 화합물 | Ki 값(mM) | 구조 |
| L-히스타민 | 0.85±0.04 | |
| 3-메틸-4-(α-아미노에틸)-이미다졸 | 0.120±0.004 | |
| 1-메틸-4-(α-아미노에틸)-이미다졸 | n.i. |
| 기질 | 사람 QC | 파파야 QC | ||||||
| KM(μM) | kcat (s-1) | Ki * (mM) | kcat/KM (mM-1s-1) | KM(μM) | kcat (S-1) | Ki * (mM) | kcat/KM (mM-1s-1) | |
| H-Gln-OH | n.r. | n.r. | n.d. | n.r. | n.d. | n.d. | n.d. | 0.23± 0.1 |
| H-Gln-AMC | 54±2 | 5.3± 0.1 | n.d. | 98± 2 | 42± 1 | 39.4± 0.4 | n.d. | 938± 13 |
| H-Gln-βNA | 70±3 | 20.6± 0.5 | 1.21± 0.07 | 294± 6 | 38± 3 | 51.4± 1.4 | 1.20± 0.08 | 1353± 70 |
| H-Gln-OtBu | 1235±74 | 6.7± 0.2 | n.i. | 5.4± 0.2 | 223± 9 | 49.4± 0.6 | n.i. | 222± 6 |
| H-Gin-NH2 | 409±40 | 12.8± 0.5 | n.i. | 31± 2 | 433± 13 | 44.8± 0.4 | n.i. | 103± 2 |
| H-Gin-Gly-OH | 247±10 | 13.2± 0.2 | n.i. | 53± 1 | 641± 20 | 45.8± 0.4 | n.i. | 71± 2 |
| H-Gln-Ala-OH | 232±5 | 57.2± 0.4 | n.i. | 247± 4 | 158± 8 | 89.8± 1.0 | n.i. | 442± 16 |
| H-Gln-Gln-OH | 148±5 | 20.7± 0.2 | n.i. | 140± 2 | 44± 3 | 43.2± 0.7 | n.i. | 982± 51 |
| H-Gln-Glu-OH | 359±10 | 24.7± 0.2 | n.i. | 58± 1 | 106± 5 | 50.3± 0.6 | n.i. | 475± 17 |
| H-Gln-Val-OH | 196±5 | 17.2± 0.1 | n.i. | 88± 2 | n.d. | n.d. | n.i. | n.d. |
| H-Gln-Tyr-OH | 211±5 | 94± 1 | n.i. | 446± 6 | n.d. | n.d. | n.i. | n.d. |
| H-Gln-Gln-Tyr-NH2 | 79±2 | 45.1± 0.4 | n.i. | 524± 8 | 103± 4 | 53.6± 0.7 | n. i. | 520± 13 |
| H-Gln-Gly-Pro-OH | 130±5 | 25.3± 0.2 | n.i. | 195± 7 | 333± 15 | 41.7± 0.5 | n. i. | 125± 4 |
| H-Gln-Tyr-Ala-OH | 101±4 | 125± 1 | n.i. | 930± 27 | 63± 3 | 104.0± 1.0 | n.i. | 1650± 63 |
| H-Gln-Phe-Ala-NH2 | 69±3 | 109± 1 | n.i. | 1811± 64 | 111± 5 | 132.1± 0.6 | n. i. | 1190± 48 |
| H-Gln-Trp-Ala-NH2 | 50±2 | 47.0± 0.7 | n.i. | 940± 24 | 78± 5 | 151.8± 2.6 | n.i. | 1946± 91 |
| H-Gln-Arg-Gly-lle-NH2 | 143±4 | 33.5± 0.4 | n.i. | 234± 4 | 123± 10 | 49.2± 1.7 | n.i. | 400± 19 |
| H-Gln-Asn-Gly-Ile-NH2 | 172±5 | 56.6± 0.5 | n.i. | 329± 7 | 153± 9 | 51.4± 0.9 | n.i. | 336± 14 |
| H-Gln-Ser-Tyr-Phe-NH2 | 55±3 | 52.8± 0.8 | n.i. | 960± 38 | 135± 6 | 64.9± 1.0 | n.i. | 481± 14 |
| H-Gtn-Arg-Tyr-Phe-NH2 | 55±2 | 29.6± 0.3 | n.i. | 538± 14 | 124± 6 | 48.9± 0.7 | n.i. | 394± 13 |
| H-Gln-Pro-Tyr-Phe-NH2 | 1889± 152 | 31.7± 1.2 | n.i. | 17± 1 | 149± 14 | 18.8± 0.6 | n.i. | 126± 8 |
| H-Gln-His-tyr-Phe-NH2 | 68±3 | 55.4± 0.7 | n.i. | 815± 26 | 92± 7 | 75.9± 1.4 | n.i. | 825± 48 |
| H-Gln-Gln-Tyr-Phe-NH2 | 41±2 | 41.4± 0.4 | n.i. | 1010± 40 | 45± 2 | 52.9± 0.7 | n.i. | 1176± 37 |
| H-Gln-Glu-Tyr-Phe-NH2 | 47±4 | 46± 1 | n.i. | 979± 62 | 100± 4 | 54.6± 0.6 | n.i. | 546± 16 |
| H-Gln-Glu-Ala-Ala-NH2 | 77±4 | 46± 1 | n.i. | 597± 18 | 102± 4 | 53.7± 0.6 | n.i. | 526± 15 |
| H-Gln-Glu-Tyr-Ala-NH2 | 69±2 | 42.1± 0.4 | n.i. | 610± 12 | 113± 5 | 44.7± 0.5 | n.i. | 396± 13 |
| H-Gln-Glu-Ala-Phe-NH2 | 39±3 | 39± 1 | n.i. | 1000± 51 | 81± 3 | 48.5± 0.45 | n.i. | 599± 17 |
| H-Gln-Glu-Asp-LeU-NH2 | 55±2 | 45.8± 0.5 | n.i. | 833± 21 | 107± 6 | 58.5± 0.4 | n.i. | 547± 27 |
| H-Gln-Lys-Arg-Leu-NH2 | 54±3 | 33.4± 0.5 | n.i. | 619± 25 | 118± 6 | 48.2± 0.8 | n.i. | 408± 14 |
| 기질 | 사람 QC | 파파야 QC | ||||
| KM (μM) | kcat (S-1) | kcat/KM (mM-1S-1) | KM(μM) | kcat(S-1) | kcat/KM mM-1S-1) | |
| H-Gln-Ala-NH2 | 155±9 | 40.1± 0.9 | 259±9 | 212±21 | 62.8±3.0 | 296±15 |
| H-Gln-Ala-Ala-NH2 | 87±3 | 76.3± 0.7 | 877±22 | 164±6 | 83.2±1.0 | 507±12 |
| H-Gln-Ala-Ala-Ala-Ala-NH2 | 65±3 | 60.5± 0.7 | 1174±43 | 197±8 | 74.6±1.0 | 379±10 |
| H-Gln-Ala-Ala-Ser-Ala-Ala-NH2 | 79±6 | 55.3± 1.6 | 700±33 | 216±6 | 78.5±1.0 | 363±5 |
| 기질 | 0.05 M 트리신-NaOH, pH 8.0 | 0.05 M 트리신-NaOH, pH 8.0, 0.5 M KCl | |||||||
| 파파야 QC | KM(mM) | kcat (s-1) | kcat/KM (mM-1s-1) | Ki(mM) | KM(mM) | kcat (s-1) | kcat/KM (mM-1s-1) | Ki(mM) | |
| H-Gln-NH2 | 0.434 ±0.015 | 43.4 ±0.4 | 100±3 | n.i. | 0.446 ±0.010 | 45.2 ±0.3 | 101±2 | n.i. | |
| H-Gln-βNA | 0.036 ±0.002 | 48.8 ±1.0 | 1356±50 | 1.14 ±0.05 | 0.032 ±0.002 | 47.2 ±0.8 | 1475±70 | 1.33 ±0.07 | |
| H-Gln-Ala-OH | 0.137 ±0.007 | 69.7 ±.9 | 509±19 | n.i. | 0.143 ±0.005 | 68.1 ±0.6 | 480±12 | n.i. | |
| H-Gln-Glu-OH | 0.098 ±0.005 | 45.0 ±0.5 | 459±18 | n.i. | 0.094 ±0.003 | 44.4 ±0.3 | 472±12 | n.i. | |
| H-Gln-Trp-Ala-NH2 | 0.079 ±0.005 | 138±3 | 1747±73 | n.i. | 0.072 ±0.004 | 133±3 | 1847±61 | n.i. | |
| H-Gln-Arg-Gly-lle-NH2 | 0.106 ±0.008 | 52.9 ±1.2 | 499±26 | n.i. | 0.065 ±0.005 | 48.4 ±1.0 | 745±42 | n.i. | |
| H-Gln-Lys-Arg-Leu-NH2 | 0.102 ±0.007 | 50±1 | 493±22 | n.i. | 0.053 ±0.002 | 58.1 ±0.7 | 1096±28 | n.i. | |
| H-Gln-Glu-Asp-Leu-NH2 | 0.109 ±0.005 | 52.4 ±0.7 | 481±16 | n.i. | 0.094 ±0.003 | 53.6 ±0.5 | 570±13 | n.i. | |
| 0.05 M Tris-HCl, pH 8.0 | 0.05 M Tris-HCl, pH 8.0, 0.5 M KCl | ||||||||
| 사람 QC | Km(mM) | Kca | |||||||
| H-Gln-NH | 0.442 ±0.030 | 12.8 ±0.3 | 29±1 | n.i. | 0.401 ±0.014 | 12.2 ±0.1 | 30±1 | n.i. | |
| H-Gln-βNA | 0.076 ±0.004 | 21.7 ±0.5 | 285±8 | 1.39 ±0.08 | 0.063 ±0.003 | 20.0 ±0.4 | 318±9 | 0.97 ±0.04 | |
| H-Gln-Ala-OH | 0.269 ±0.007 | 54.4 ±0.5 | 202±3 | n.i. | 0.357 ±0.012 | 47.6 ±0.6 | 133±3 | n.i. | |
| H-Gln-Glu-OH | 0.373 ±0.015 | 21.4 ±0.3 | 57±2 | n.i. | 0.607 ±0.036 | 18.9 ±0.5 | 31±1 | n.i. | |
| H-Gln-Trp-Ala-NH2 | 0.054 ±0.003 | 50.8 ±0.6 | 941±41 | n.i. | 0.056 ±0.002 | 50.0 ±0.4 | 893±25 | n.i. | |
| H-Gln-Arg-Gly-lle-NH2 | 0.166 ±0.013 | 31±1 | 187±9 | n.i. | 0.091 ±0.005 | 29.8 ±0.5 | 327±12 | n.i. | |
| H-Gln-Lys-Arg-Leu-NH2 | 0.051 ±0.003 | 29.4 ±0.5 | 577±24 | n.i. | 0.034 ±0.001 | 31.6 ±0.3 | 929±19 | n.i. | |
| H-Gln-Glu-Asp-Leu-NH2 | 0.060 ±0.002 | 46.6 ±0.5 | 777±18 | n.i. | 0.061 ±0.002 | 45.6 ±0.5 | 748±16 | n.i. | |
| 펩타이드 | KM(μM) | kcat(s-1) | kcat/KM(mM-1s-1) |
| [Gln3]Aβ3-11a | 87± 3# | 55± 1# | 632± 10# |
| [Gln3]Aβ3-11a | 155± 4 | 41.4± 0.4 | 267± 4 |
| [Gln3]Aβ3-21a | 162± 12 | 62± 3 | 383± 10 |
| [Gln3]A3-40 | 89± 10 | 40± 2 | 449± 28 |
| 글루카곤(3-29) | 19± 1 | 10.0± 0.2 | 526± 17 |
Claims (47)
- c) 생체 내에서 글루타미닐 사이클라제(QC)의 활성을 조절하여 치료될 수 있는 포유동물의 질병의 치료 또는d) QC 활성의 조절로 인한 pGlu-포함 펩타이드의 작용에 기초한, 생리학적 과정의 조절용 의약품 제조에 사용되는 글루타미닐 사이클라제 (QC) 이펙터의 용도.
- 제 1 항에 있어서, Aβ3-40/42, [Gln3]Aβ3-40/42, [Glu11]Aβ11-40/42, [Gln11]Aβ11-40/42, [Gln1]가스트린류 (17 및 34), [Gln1]뉴로텐신, [Gln1]FPP, [Gln1]TRH, [Gln1]GnRH, [Gln1]CCL 2, [Gln1]CCL 7, [Gln1]CCL 8, [Gln1]CCL 16, [Gln1]CCL 18, [Gln1]ELA, [Gln1]프랙탈킨(Fractalkine), [Gln1]오렉신(Orexin) A, [Gln3]글루카곤3-29 및 [Gln5]서브스탄스(Substance) P5-11로부터 선택된 하나 이상의 QC 기질에서 N-말단 글루탐산 또는 글루타민 잔기를 피로글루탐산 잔기로 전환하는 것을 변경하는데 사용되는 것인 용도.
- 제 1 항에 있어서, 알츠하이머병 또는 다운 증후군의 치료에 사용되는 것인 용도.
- 제 1 항에 있어서, 남성 생식능력 억제 및/또는 조절에 사용되는 것인 용도.
- 제 1 항에 있어서, 헬리코박터 파일로리 감염에 의한 또는 무관한 궤양 질환 및 위암, 병원성 정신질환, 정신분열증, 불임증, 신생물 형성, 염증성 숙주 반응, 암, 악성 전이, 흑색종, 건선, 류마티스 관절염, 아테롬성 동맥경화증, 체액성 및 세포-매개성 면역반응 장애, 내피조직으로의 백혈구 흡착 및 이동 과정, 음식 섭취 장애, 수면-각성 상태, 에너지 대사의 항상성 조절 장애, 자율신경 기능 장애, 호르몬 균형 장애 및 체액 조절 장애로부터 선택되는 질병의 치료에 사용되는 것인 용도.
- 제 1 항에 있어서, 위장관계 세포 증식의 자극, 위장 점막 세포인 상피 세포증식의 자극, 급성 산 분비의 자극과, 산 생성 체강벽 세포 및 히스타민-분비 장크롬친화성-유사 세포를 분화시키는데 사용되는 것인 용도.
- 제 1 항에 있어서, 골수성 모세포 증식을 억제하는데 사용되는 것인 용도.
- 제 1 항에 있어서, 헌팅턴씨병 및 케네디씨병(Kennedy's disease)에서 선택되는 질병의 치료에 사용되는 것인 용도.
- 제 1 항 내지 제 8 항 중 어느 한 항에 있어서, 상기 QC 이펙터가 DP IV 또는 DP IV-유사 효소의 억제제 및/또는 아미노펩티다제-억제제와 병용하여 투여되는 것인 용도.
- 제 9 항에 있어서, DP IV-유사 효소의 H-isoAsp-Ala-OH 생성 활성이 차단되는 것인 용도.
- 제 9 항 또는 제 10 항에 있어서, 상기 DP IV-유사 효소가 DP II인 것인 용도.
- 하나 이상의 QC 이펙터를, 임의로 통상적인 담체 및/또는 부형제와 조합하여 포함하는 것을 특징으로 하는 장관 외, 장관 내 또는 경구 투여용 약제학적 조성물.
- 하나 이상의 QC 이펙터를 DP IV 또는 DP IV-유사 효소의 하나 이상의 억제제 및/또는 하나 이상의 아미노펩티다제-억제제와 조합하여 포함하고, 임의로 통상적인 담체 및/또는 부형제와 조합하여 포함하는 것을 특징으로 하는 장관 외, 장관 내 또는 경구 투여용 약제학적 조성물.
- QC, 및/또는 DP IV 및 DP IV-유사 효소, 및/또는 아미노펩티다제의 효소 활성을 생체 내에서 조절하는데 사용되는 것인 제 12 항 또는 제 13 항에 따른 약제학적 조성물의 용도.
- 제 14 항에 있어서, DP IV-유사 효소의 H-isoAsp-Ala-OH 생성 활성이 차단되는 것인 용도.
- 제 14 항 또는 제 15 항에 있어서, 상기 DP IV-유사 효소가 DP II인 것인 용도.
- 제 14 항 내지 제 16 항 중 어느 한 항에 있어서, Aβ3-40/42, [Gln3]Aβ3-40/42, [Glu11]Aβ11-40/42, [Gln11]Aβ11-40/42, [Gln1]가스트린류 (17 및 34), [Gln1]뉴로텐신, [Gln1]FPP, [Gln1]TRH, [Gln1]GnRH, [Gln1]CCL 2, [Gln1]CCL 7, [Gln1]CCL 8, [Gln1]CCL 16, [Gln1]CCL 18, [Gln1]ELA, [Gln1]프랙탈킨, [Gln1]오렉신 A로부터 선택된 하나 이상의 QC 기질에서 N-말단 글루탐산 또는 글루타민 잔기를 피로글루타밀 (5-옥소-프롤릴) 잔기로 전환하는 것을 변경하는데 사용되는 것인 용도.
- 제 14 항 내지 제 16 항 중 어느 한 항에 있어서, 알츠하이머병 또는 다운 증후군을 치료하는 것인 용도.
- 제 14 항 내지 제 16 항 중 어느 한 항에 있어서, QC 이펙터를 투여하여 남성 생식능력을 조절하는 것인 용도.
- 제 14 항 내지 제 16 항 중 어느 한 항에 있어서, 헬리코박터 파일로리 감염에 의한 또는 무관한 궤양 질환 및 위암, 병원성 정신질환, 정신분열증, 불임증, 신생물 형성, 염증성 숙주 반응, 암, 악성 전이, 흑색종, 건선, 류마티스 관절염, 아테롬성 동맥경화증, 체액성 및 세포-매개성 면역반응 장애, 내피조직으로의 백혈구 흡착 및 이동 과정, 음식 섭취 장애, 수면-각성 상태, 에너지 대사의 항상성 조절 장애, 자율신경 기능 장애, 호르몬 균형 장애 및 체액 조절 장애로 이루어지는 군으로부터 선택된 질병을 치료하는 것인 용도.
- 제 14 항 내지 제 16 항 중 어느 한 항에 있어서, 위장관계 세포 증식의 자극, 위장 점막 세포인 상피 세포 증식의 자극, 급성 산 분비의 자극, 및 산 생성 체강벽 세포 및 히스타민-분비 장크롬친화성-유사 세포를 분화시키는 것인 용도.
- 제 14 항 내지 제 16 항 중 어느 한 항에 있어서, 골수성 모세포 증식을 억제하는 것인 용도.
- a) 임의의 화합물과 QC를 이들 간에 결합을 허용할 수 있는 조건 하에서 접촉시키고;b) QC의 기질을 첨가하고;c) 기질의 전환을 관측하거나 또는 임의로 잔류 QC 활성을 측정하고;d) 기질 전환 및/또는 QC의 효소 활성에서의 변화를 계산하여 QC의 활성 변경 이펙터를 확인하는 단계를 포함하는, QC 이펙터를 확인 및 선택하는 스크리닝 방법.
- a) 임의의 화합물과 QC를 이들 간에 결합을 허용할 수 있는 조건 하에서 접촉시키고;b) QC의 기질을 첨가하고;c) 기질의 전환을 관측하거나 또는 임의로 잔류 QC 활성을 측정하고;d) 기질 전환 및/또는 QC의 효소 활성에서의 변화를 계산하여 QC의 활성 변경 이펙터를 확인하는 단계를 포함하는, QC의 활성부위 결합 이온과 직접적으로 또는 간접적으로 상호작용하는 이펙터를 확인 및 선택하는 스크리닝 방법.
- 제 23 항 또는 제 24 항의 스크리닝 방법에 의해 확인된 QC 이펙터.
- 하나 이상의 글루타미닐 사이클라제(QC) 이펙터의 치료학적으로 유효한 양을 포유동물에게 투여하여 Gln 또는 Glu 펩타이드 상에서 QC 활성을 조절하는 것을 포함하는,a) 생체 내에서, QC 활성의 조절에 의해서, 또는b) QC 활성의 조절로 유발되는 pGlu-포함 펩타이드의 작용에 기초한, 생리학적 과정의 조절에 의해 치료될 수 있는 포유동물의 질병을 치료하는 방법.
- 제 26 항에 있어서, Aβ3-40/42, [Gln3]Aβ3-40/42, [Glu11]Aβ11-40/42, [Gln11]Aβ11-40/42, [Gln1]가스트린류 (17 및 34), [Gln1]뉴로텐신, [Gln1]FPP, [Gln1]TRH, [Gln1]GnRH, [Gln1]CCL 2, [Gln1]CCL 7, [Gln1]CCL 8, [Gln1]CCL 16, [Gln1]CCL 18, [Gln1]ELA, [Gln1]프랙탈킨, [Gln1]오렉신 A, [Gln3]글루카곤3-29 및 [Gln5]서브스탄스(Substance) P5-11로 이루어지는 군으로부터 선택된 하나 이상의 QC 기질에서 N-말단 글루탐산 또는 글루타민 잔기가 피로글루탐산 잔기로 전환되는 것을 변경하는 것인 방법.
- 제 26 항에 있어서, 알츠하이머병 또는 다운 증후군을 치료하는 것인 방법.
- 제 26 항에 있어서, 상기 QC 활성의 조절이 남성 생식능력의 억제 및/또는 조절을 포함하는 것인 방법.
- 제 26 항에 있어서, 상기 질병이 헬리코박터 파일로리 감염에 의한 또는 무관한 궤양 질환 및 위암, 병원성 정신질환, 정신분열증, 불임증, 신생물 형성, 염증성 숙주 반응, 암, 악성 전이, 흑색종, 건선, 류마티스 관절염, 아테롬성 동맥경화증, 체액성 및 세포-매개성 면역반응 장애, 내피조직으로의 백혈구 흡착 및 이동 과정, 음식 섭취 장애, 수면-각성 상태, 에너지 대사의 항상성 조절 장애, 자율신경 기능 장애, 호르몬 균형 장애 및 체액 조절 장애로 이루어지는 군으로부터 선택되는 것인 방법.
- 제 26 항에 있어서, 상기 치료가 위장관계 세포 증식의 자극, 위장 점막 세포인 상피세포 증식의 자극, 및 급성 산 분비의 자극과, 산 생성 체강벽 세포 및 히스타민-분비 장크롬친화성-유사 세포의 분화를 일으키는 것인 방법.
- 제 26 항에 있어서, 상기 치료가 골수성 모세포 증식을 억제하는 것인 방법.
- 제 26 항 내지 제 32 항 중 어느 한 항에 있어서, 상기 QC 이펙터가 DP IV 또는 DP IV-유사 효소의 억제제 및/또는 아미노펩티다제-억제제와 병용하여 투여되는 것인 방법.
- 제 33 항에 있어서, DP IV-유사 효소의 H-isoAsp-Ala-OH 생성 활성이 차단되는 것인 방법.
- 제 34 항에 있어서, 상기 DP IV-유사 효소가 DP II인 것인 방법.
- 하나 이상의 QC 이펙터를 임의로 치료학적으로 허용가능한 담체 및/또는 부형제와 조합하여 포함하는, 장관 외, 장관 내 또는 경구 투여용 약제학적 조성물.
- 제 36 항에 있어서, 추가로 하나 이상의 DP IV 또는 DP IV-유사 효소의 억제제 및/또는 하나 이상의 아미노펩티다제-억제제를 포함하여서 되는 것인 약제학적 조성물.
- 제 36 항 또는 제 37 항에 따른 약제학적 조성물을 포유동물에게 투여하는 것을 포함하는,a) 생체 내에서 QC 활성의 조절에 의해서, 및/또는b) 생체 내에서 QC 활성 및/또는 DP IV 및 DP IV-유사 효소의 활성 및/또는 아미노펩티다제 활성의 조절로 유발되는 pGlu-포함 펩타이드의 작용에 기초한, 생리학적 과정의 조절에 의해 치료될 수 있는 상기 포유동물의 질병을 치료하는 방법.
- 제 38 항에 있어서, Aβ3-40/42, [Gln3]Aβ3-40/42, [Glu11]Aβ11-40/42, [Gln11]Aβ11-40/42, [Gln1]가스트린류 (17 및 34), [Gln1]뉴로텐신, [Gln1]FPP, [Gln1]TRH, [Gln1]GnRH, [Gln1]CCL 2, [Gln1]CCL 7, [Gln1]CCL 8, [Gln1]CCL 16, [Gln1]CCL 18, [Gln1]ELA, [Gln1]프랙탈킨, [Gln1]오렉신 A로 이루어지는 군으로부터 선택된 하나 이상의 QC 기질에서 N-말단 글루탐산 또는 글루타민 잔기를 피로글루타밀 (5-옥소-프롤릴) 잔기로 전환하는 것을 변경하는 것인 방법.
- 제 38 항에 있어서, 알츠하이머병 또는 다운 증후군을 치료하는 것인 방법.
- 제 38 항에 있어서, 남성 생식 능력을 조절하는 것인 방법.
- 제 38 항에 있어서, 궤양 질환, 헬리코박터 파일로리 감염에 의한 또는 무관한 위암, 병원성 정신질환, 정신분열증, 불임증, 신생물 형성, 염증성 숙주 반응, 암, 악성 전이, 흑색종, 건선, 류마티스 관절염, 아테롬성 동맥경화증, 체액성 및 세포-매개성 면역반응 장애, 내피조직으로의 백혈구 흡착 및 이동 과정, 음식 섭취 장애, 수면-각성 상태, 에너지 대사의 항상성 조절 장애, 자율신경 기능 장애, 호르몬 균형 장애 및 체액 조절 장애로 이루어지는 군으로부터 선택된 질병을 치료하는 것인 방법.
- 제 38 항에 있어서, 위장관계 세포 증식을 자극하고, 위장 점막 세포인 상피 세포의 증식과 급성 산 분비 증식을 자극하고, 산 생성 체강벽 세포 및 히스타민-분비 장크롬친화성-유사 세포의 분화를 자극하는 것인 방법.
- 제 38 항에 있어서, 골수성 모세포 증식을 억제하는 것인 방법.
- a) 임의의 화합물과 QC를 이들 간에 결합을 허용할 수 있는 조건 하에서 접촉시키고;b) QC의 기질을 첨가하고;c) 기질의 전환을 관측하거나 또는 임의로 잔류 QC 활성을 측정하고;d) 기질 전환 및/또는 QC의 효소 활성에서의 변화를 계산하여 QC의 활성 변경 이펙터를 확인하는 단계를 포함하는, QC의 활성 이펙터를 확인 및 선택하는 스크리닝 방법.
- a) 임의의 화합물과 QC를 이들 간에 결합을 허용할 수 있는 조건 하에서 접촉시키고;b) QC에 의해 전환되는 QC의 기질을 첨가하고;c) 기질의 전환을 관측하거나 또는 임의로 잔류 QC 활성을 측정하고;d) 기질 전환 및/또는 QC의 효소 활성에서의 변화를 계산하여 변화가 QC의 활성 변경 이펙터를 확인하는 데 사용하는 단계를 포함하는, QC의 활성부위 결합 금속이온과 직접적으로 또는 간접적으로 상호작용하는 이펙터를 확인 및 선택하는 스크리닝 방법.
- 제 45 항 또는 제 46 항의 스크리닝 방법에 의해 확인된 QC의 이펙터.
Applications Claiming Priority (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US46804303P | 2003-05-05 | 2003-05-05 | |
| US46801403P | 2003-05-05 | 2003-05-05 | |
| US60/468,043 | 2003-05-05 | ||
| US60/468,014 | 2003-05-05 | ||
| US51203803P | 2003-10-15 | 2003-10-15 | |
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| DK (1) | DK2206496T3 (ko) |
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-
2004
- 2004-05-05 KR KR1020117010851A patent/KR20110059664A/ko not_active Ceased
- 2004-05-05 KR KR1020057021071A patent/KR20060009902A/ko not_active Ceased
- 2004-05-05 NZ NZ568459A patent/NZ568459A/en not_active IP Right Cessation
- 2004-05-05 EP EP10159763.1A patent/EP2206496B1/en not_active Expired - Lifetime
- 2004-05-05 DE DE202004021723U patent/DE202004021723U1/de not_active Expired - Lifetime
- 2004-05-05 KR KR1020107007101A patent/KR20100038477A/ko not_active Ceased
- 2004-05-05 DE DE602004026712T patent/DE602004026712D1/de not_active Expired - Lifetime
- 2004-05-05 KR KR1020107020979A patent/KR20100106630A/ko not_active Abandoned
- 2004-05-05 PT PT04731150T patent/PT1620082E/pt unknown
- 2004-05-05 DK DK10159763.1T patent/DK2206496T3/da active
- 2004-05-05 KR KR1020127002611A patent/KR20120035203A/ko not_active Ceased
- 2004-05-05 CN CN201010168259A patent/CN101837127A/zh active Pending
- 2004-05-05 US US10/839,017 patent/US7381537B2/en not_active Expired - Lifetime
- 2004-05-05 NZ NZ572274A patent/NZ572274A/en not_active IP Right Cessation
- 2004-05-05 EP EP07150046A patent/EP1961416B1/en not_active Expired - Lifetime
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- 2008-04-11 US US12/101,497 patent/US8685664B2/en not_active Expired - Lifetime
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- 2010-07-05 CY CY20101100612T patent/CY1110171T1/el unknown
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- 2012-04-26 JP JP2012100566A patent/JP2012184237A/ja not_active Withdrawn
Also Published As
| Publication number | Publication date |
|---|---|
| DE602004026712D1 (de) | 2010-06-02 |
| NZ572274A (en) | 2009-06-26 |
| EP1961416B1 (en) | 2013-01-23 |
| DK2206496T3 (da) | 2014-12-15 |
| KR20100106630A (ko) | 2010-10-01 |
| US8685664B2 (en) | 2014-04-01 |
| EP2206496A1 (en) | 2010-07-14 |
| CY1110171T1 (el) | 2015-01-14 |
| DE202004021723U1 (de) | 2010-07-15 |
| CN101837127A (zh) | 2010-09-22 |
| US20050058635A1 (en) | 2005-03-17 |
| KR20100038477A (ko) | 2010-04-14 |
| EP2206496B1 (en) | 2014-09-17 |
| KR20110059664A (ko) | 2011-06-02 |
| EP1961416A1 (en) | 2008-08-27 |
| US20080286810A1 (en) | 2008-11-20 |
| PT1620082E (pt) | 2010-06-11 |
| KR20120035203A (ko) | 2012-04-13 |
| NZ568459A (en) | 2009-06-26 |
| US7381537B2 (en) | 2008-06-03 |
| JP2012184237A (ja) | 2012-09-27 |
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