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    • 57. 发明申请
    • LID MECHANISM
    • 引导机制
    • WO2016011162A1
    • 2016-01-21
    • PCT/US2015/040584
    • 2015-07-15
    • SYNTHETIC GENOMICS, INC.
    • WARDEN, LaurenceBEAVER, Scott, W.BECKER, Mark, H.
    • B65D55/00
    • B01L3/508B01L3/50853B01L3/527B01L7/52B01L2300/041B01L2300/045B60K2015/0425B65D43/14B65D43/18B65D43/26G01N2035/00287G01N2035/00346
    • The invention provides a lid mechanism suitable for use with automated instrumentation. The lid mechanism has a compact design enabling it to function in very small spaces, and therefore on very compact instrumentation. One embodiment of the lid mechanism has a nut positioned around a jackscrew; a motor translationally attached to the nut for driving rotational motion of the nut around the jackscrew and vertical motion of the jackscrew; a main shaft positioned around the jackscrew with a bearing support positioned on the main shaft; a moving support comprising a bearing guide track and positioned on the main shaft so that the bearing support is positioned within the bearing guide track; and a lid plate positioned on the moving support so that vertical movement of the moving support causes vertical movement of the lid plate and rotational movement of the moving support causes rotational movement of the lid plate. Also provided is an automated laboratory instrument having a lid mechanism of the invention.
    • 本发明提供一种适用于自动化仪器的盖子机构。 盖机构具有紧凑的设计,使其能够在非常小的空间中工作,因此在非常紧凑的仪器上。 盖机构的一个实施例具有位于千斤顶附近的螺母; 平行地连接到螺母的电机,用于驱动螺母围绕起重螺丝的旋转运动和顶起螺丝的垂直运动; 主轴围绕所述起重螺丝定位,所述轴承支撑件定位在所述主轴上; 移动支撑件,其包括轴承导轨并定位在所述主轴上,使得所述轴承支撑件定位在所述轴承导轨内; 以及位于移动支撑件上的盖板,使得移动支撑件的垂直运动导致盖板的垂直运动,并且移动支撑件的旋转运动导致盖板的旋转运动。 还提供了具有本发明的盖机构的自动化实验室仪器。
    • 59. 发明申请
    • COMPOSITIONS AND METHODS FOR PRODUCING CHEMICALS AND DERIVATIVES THEREOF
    • 生产化学品及其衍生物的组合物和方法
    • WO2015143381A3
    • 2015-11-12
    • PCT/US2015021848
    • 2015-03-20
    • SYNTHETIC GENOMICS INC
    • KAMBOURAKIS SPIROSGRIFFIN BENJAMIN MMARTIN KEVIN V
    • C12P7/58C12N9/04C12P7/42C12P17/04
    • C12P7/58C12P7/44C12P17/06
    • The present invention provides methods for producing a product of one or more enzymatic pathways. The pathways used in the methods of the invention involve one or more conversion steps such as, for example, an enzymatic conversion of guluronic acid into D-glucarate (Step 7); an enzymatic conversion of 5-ketogluconate (5-KGA) into L-Iduronic acid (Step 15); an enzymatic conversion of L-Iduronic acid into Idaric acid Step 7b); and an enzymatic conversion of 5-ketocluconate into 4,6-dihydroxy 2,5-diketo hexanoate (2,5-DDH) (Step 16). In some embodiments the methods of the invention produce 2,5-furandicarboxylic acid (FDCA) as a product. The methods include both enzymatic and chemical conversions as steps. Various pathways are also provided for converting glucose into 5-dehdyro-4-deoxy-glucarate (DDG), and for converting glucose into 2,5-furandicarboxylic acid (FDCA). The methods also involve the use of engineered enzymes that perform reactions with high specificity and efficiency. Additional products that can be produce include metabolic products such as, but not limited to, guluronic acid, L-iduronic acid, idaric acid, glucaric acid. Any of the products can be produced using glucose as a substrate or using any intermediate in any of the methods or pathways of the invention.
    • 本发明提供了用于生产一种或多种酶途径的产物的方法。 用于本发明方法的途径涉及一个或多个转化步骤,例如古洛糖醛酸到D-葡萄糖酸的酶促转化(步骤7); 5-酮葡糖酸(5-KGA)到L-艾杜糖醛酸的酶转化(步骤15); 将L-艾杜糖醛酸转化为二酸的步骤7b); 和5-酮基葡萄糖酸盐到4,6-二羟基2,5-二酮基己酸酯(2,5-DDH)的酶促转化(步骤16)。 在一些实施方案中,本发明的方法产生2,5-呋喃二甲酸(FDCA)作为产物。 该方法包括作为步骤的酶促和化学转化。 还提供了各种途径将葡萄糖转化为5-脱氢-4-脱氧葡萄糖酸(DDG),并将葡萄糖转化为2,5-呋喃二甲酸(FDCA)。 这些方法还涉及使用工程化酶进行具有高特异性和效率的反应。 可以生产的其它产品包括代谢产物,例如但不限于古洛糖醛酸,L-艾杜糖醛酸,癸二酸,葡糖二酸。 可以使用葡萄糖作为底物或使用本发明的任何方法或途径中的任何中间产物产生任何产物。