Abstract:
The present invention related to a method of assaying ubiquitination in a sample by combining ubiquitin and two or more of E1, E2, E3 and a substrate protein in a sample under conditions suitable for ubiquitination to take place, exposing the sample with a labelled binding partner which is specific for the ubiquitin and measuring the amount of labelled ubiquitin bound to any one of the components in the sample, wherein one or more of the components in the sample comprises an immobilisation tag which facilitates its immobilisation onto a solid surface.
Abstract:
An electrically controllable optical lens apparatus makes use of fixed lenses and an active optical element together in a lens enclosure. The enclosure may be a barrel structure that is easily mounted to a camera device having an image sensor. The active optical element, such as a tunable liquid crystal lens, receives an electrical signal from the camera device via electrical conductors integral with the lens enclosure that provide electrical pathways between the active element on the interior of the enclosure and surface contacts on the camera device. The enclosure may be a two-piece structure, and the electrical conductors may be attached to either piece of the structure. The lens enclosure may also be threaded for attachment to the camera device. The electrical conductors may also use spring loaded contact portions or molded interconnect devices.
Abstract:
Disclosed is an aqueous dispersion of a transparent powder coating consisting of a solid powder component and an aqueous component. The solid powder component includes at least one epoxy group-containing binder, at least one crosslinking agent, and optionally catalysts, adjuvants, or additives typical for transparent powder coatings. The binder contains 30-45% glycidyl-containing monomers and optionally vinylaromatic compounds such as styrene. The crosslinking agent is preferably a straight-chain aliphatic dicarboxylic acid and/or a carboxy-functional polyester. The aqueous component includes at least one nonionic thickener and optional materials such as catalysts, adjuvants, and/or other such materials. The nonionic thickener is preferably a nonionic associative thickener. The invention also provides a process for preparing the aqueous dispersion of the invention and a process for coating a vehicle body with the aqueous dispersion of the invention.
Abstract:
A pharmaceutical compound of the formula: ##STR1## in which R.sup.1 is hydrogen, hydroxy or C.sub.1-6 alkoxy, R.sup.2 is hydrogen, carboxy, tetrazolyl, --SO.sub.2 H, --SO.sub.3 H, --OSO.sub.3 H, --CONHOH, or --P(OH)OR', --PO(OH)OR', --OP(OH)OR' or --OPO(OH)OR' where R' is hydrogen, C.sub.1-6 alkyl, C.sub.2-6 alkenyl or aryl C.sub.1-6 alkyl,R.sup.3 is hydrogen, hydroxy or C.sub.1-4 alkoxy, andR.sup.4 is fluoro, trifluoromethyl, nitro, C.sub.1-6 alkyl, C.sub.3-7 cycloalkyl, C.sub.2-6 alkenyl, C.sub.2-6 alkynyl, C.sub.1-6 alkylthio, heteroaryl, optionally substituted aryl, optionally substituted aryl C.sub.1-6 alkyl, optionally substituted aryl C.sub.2-6 alkenyl, optionally substituted aryl C.sub.2-6 alkynyl, optionally substituted aryloxy, optionally substituted aryl C.sub.1-6 alkoxy, optionally substituted arylthio, optionally substituted aryl C.sub.1-6 alkylthio or --CONR"R'", --SO.sub.2 NR"R"", --NR"R'", --OCONR"R"' or --SONR"R'" where R" and R'" are each hydrogen, C.sub.1-6 alkyl or aryl C.sub.1-6 alkyl, or R" and R'" together form a C.sub.3-7 alkylene ring;provided that (i) R.sup.1, R.sup.2 and R.sup.3 are not all hydrogen,and (ii) when R.sup.2 and R.sup.3 are hydrogen and R.sup.1 is hydroxy, R.sup.4 is not fluoro;or a salt or ester thereof.
Abstract:
An operating system for telescoping a telescopic boom for a crane, particularly a boom having three or more telescoping sections, enabling the boom to be extended and retracted automatically under load according to a predetermined sequence which optimises the load capacity of the boom and the stability of the crane. The boom may be switched rapidly between modes of operation in one of which all of the telescoping sections may extend or retract and in another of which at least one telescoping section is maintained in the fully retracted position.
Abstract:
An electrically controllable optical lens apparatus makes use of fixed lenses and an active optical element together in a lens enclosure. The enclosure may be a barrel structure that is easily mounted to a camera device having an image sensor. The active optical element, such as a tunable liquid crystal lens, receives an electrical signal from the camera device via electrical conductors integral with the lens enclosure that provide electrical pathways between the active element on the interior of the enclosure and surface contacts on the camera device. The enclosure may be a two-piece structure, and the electrical conductors may be attached to either piece of the structure. The lens enclosure may also be threaded for attachment to the camera device. The electrical conductors may also use spring loaded contact portions or molded interconnect devices.
Abstract:
A tablet electronic device is disclosed. The tablet electronic device includes a first side, a second side and an electronic component. The first side has a first thickness. The second side is opposite to the first side and has a second thickness. The second thickness is larger than the first thickness. The second side has a recess. The electronic component is accommodated in the recess such that a gravity center of the tablet electronic device is adjusted towards the second side. The tablet electronic device has a holding portion and the center of gravity of the tablet electronic device is arranged in a suitable position, thus the tablet electronic device disclosed herein can be comfortably operated while being held in a user's hand. Furthermore, the tablet electronic device can be set in various ways for comfortable usage.
Abstract:
A method for producing oil from an underground formation comprising providing a first well in one or more formations, the first well comprising a plurality of sections along a length of the well; providing a second well in the formation; injecting an enhanced oil recovery formulation into at least a first section and a second section of the first well and into the formation; flowing the formulation and/or oil towards the second well in one or more formations; producing the formulation and/or oil from the second well; and then modifying the injecting into the second section, while continuing the injecting into the first section.
Abstract:
The present invention provides compounds of formula (I) wherein A is (1), (2), (3), (4), (5), (6) or (7) and wherein R1, R7, y and Ar1 are defined herein. The compounds are inhibitors of the uptake of one or more monoamines selected from serotonin, norepinephrine and dopamine and, as such, may be useful in the treatment of disorders of the central and/or peripheral nervous system.