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    • 3. 发明申请
    • NOVEL HUMAN MYELOID TERMINAL DIFFERENTIATION RESPONSE GENE
    • 新型人牙ID ID AL AL ATION SE SE SE SE。。。。
    • WO1997030157A1
    • 1997-08-21
    • PCT/US1997002458
    • 1997-02-14
    • INCYTE PHARMACEUTICALS, INC.COCKS, Benjamin, GraemeAU-YOUNG, JaniceSEILHAMER, Jeffrey, J.
    • INCYTE PHARMACEUTICALS, INC.
    • C12N15/19
    • C07K14/47A61K38/00A61K48/00
    • The present invention provides polynucleotide and amino acid sequences which encode and identify a novel human myeloid terminal differentiation response gene designated MYD118. The present invention also provides for MYD118 antisense molecules. The invention further provides genetically engineered expression vectors and host cells for the production of purified MYD118 polypeptide; antibodies, antagonists and inhibitors of MYD118 polypeptide; and pharmaceutical compositions and methods of treatment based on polynucleotide sequences encoding MYD118 polypeptide. The invention specifically provides for use of the MYD118 polynucleotide sequences as a diagnostic composition for the detection of myeloproliferative diseases and leukemias. The invention also relates to therapeutic methods and compositions based upon the nucleotide and amino acid sequences for MYD118. The invention further provides antibodies which specifically bind to MYD118.
    • 本发明提供编码和鉴定指定为MYD118的新型人骨髓末端分化应答基因的多核苷酸和氨基酸序列。 本发明还提供MYD118反义分子。 本发明进一步提供用于产生纯化的MYD118多肽的遗传工程表达载体和宿主细胞; 抗体,拮抗剂和MYD118多肽的抑制剂; 以及基于编码MYD118多肽的多核苷酸序列的药物组合物和治疗方法。 本发明特别提供MYD118多核苷酸序列用作检测骨髓增生性疾病和白血病的诊断组合物。 本发明还涉及基于MYD118的核苷酸和氨基酸序列的治疗方法和组合物。 本发明进一步提供特异性结合MYD118的抗体。
    • 10. 发明申请
    • COMPUTER SYSTEM STORING AND ANALYZING MICROBIOLOGICAL DATA
    • 计算机系统存储和分析微生物数据
    • WO1996023078A1
    • 1996-08-01
    • PCT/US1995012429
    • 1995-09-06
    • INCYTE PHARMACEUTICALS, INC.SEILHAMER, Jeffrey, J.DELEGEANE, AngeloSCOTT, Randal, W.
    • INCYTE PHARMACEUTICALS, INC.
    • C12Q01/68
    • G06F19/28
    • A relational database (1) for the storage of microbiological information. The database contains cDNA sequencing data (290, 300) and coresponding match logs (510, 515) indicating a correlation between presently identified cDNA sequences and previously known sequences. In addition, a variety of the tables that make up the database are used to store historical data related to the identification of a particular cDNA sequence. Such tables include biological source data (130); cell culture and treatment data (140); mRNA preparation data (150); cDNA construction data (170); and clone preparation data. The clone preparation data further includes tables containing data relevant to inoculation (200), preparation (210), excision (190), and a fluorometer (220, 230, 240). The interrelated information in the database allows various queries to be used to extract data for scientific analysis and other applications. For example an abundance analysis may be performed by using the database of the preferred embodiment to determine the frequency a particular RNA transcript appears in a certain source tissue.
    • 用于存储微生物信息的关系数据库(1)。 数据库包含cDNA测序数据(290,300)和相应的匹配记录(510,515),表明当前鉴定的cDNA序列与先前已知序列之间的相关性。 此外,构成数据库的各种表用于存储与特定cDNA序列的鉴定有关的历史数据。 这些表包括生物源数据(130); 细胞培养和治疗数据(140); mRNA制备数据(150); cDNA构建数据(170); 并克隆准备数据。 克隆制备数据还包括含有与接种(200),制备(210),切除(190)和荧光计(220,230,240)相关的数据的表。 数据库中的相关信息允许使用各种查询来提取科学分析和其他应用程序的数据。 例如,可以通过使用优选实施方案的数据库来确定特定RNA转录物出现在某个来源组织中的频率来进行丰度分析。