
MIG1 | SGD - Saccharomyces Genome Database
2007年2月16日 · MIG1 encodes a Cys2His2 zinc-finger transcription factor of the beta-beta-alpha family. Mig1p is the main effector in glucose repression of SUC, MAL and GAL genes, and binds 5'-MCCCCRS-3' motifs.
MIG1-dependent and MIG1-independent glucose regulation of …
Mig1p, a zinc-finger class of DNA-binding protein, is a transcriptional repressor regulating GAL and SUC gene expression in response to glucose. This report demonstrates that Mig1 protein represses transcription of the MAL61 and MAL62 structural genes and also the MAL63 gene, which encodes the Mal-activator.
Mikoyan-Gurevich MiG-1 / MiG-3 - Military Factory
2017年11月2日 · Page details technical specifications, development, and operational history of the Mikoyan-Gurevich MiG-1 / MiG-3 Single-Seat Monoplane Fighter Aircraft including pictures.
MiG-1 Fighter | World War II Database - WW2DB
Initially named I-200, the design focused on keeping the weight low, profile minimal, and the max speed high. In Nov 1939, Nikolai Polikarpov's original design was given to Artem Mikoyan and Mikhail Gurevich, who took the credit for the design when the prototype flew on 5 Apr 1940. The first I-200 fighters entered service in the fall of 1940.
MIG1 Glucose Repression in Metabolic Processes of
The role of MIG1 is known in glucose repression but the evaluation of effects on aerobic/anaerobic metabolism by deletion of MIG1 and constructing an optimal strain brand remains unclear and an objective to be explored.
Mikoyan-Gurevich MiG-1 | World War II Wiki | Fandom
The Mikoyan-Gurevich MiG-1 was the first design to achieve production status from the OKB (Experimental Construction Bureau) headed by Artem I Mikoyan and Mikhail Y Gurevich (the acronym 'MiG' being derived from their two names). The type was later succeeded by an extensively modified version known as the MiG-3.
The Mikoyan-Gurevich MiG-1 & MiG-3 High-Altitude Interceptors
2018年12月26日 · Designed for use in a high-altitude bomber, a project that never materialized, the AM-37 was 12-cylinder liquid-cooled engine that generated 1,350 horsepower and featured boosted supercharging.
MiG-1. Photo and video, history, characteristics of the aircraft.
The aircraft type MiG-1 was established as the first fighter known designers Mikoyan and Gurevich. This machine has other designations, such as "product 61" project or "X", a well-known name and it was-200. This machine was the first high …
Mikoyan-Gurevich Mig-1/3 - history, photos, specification of the ...
Features the development history, photos, technical specification and line drawings of the Russia Mikoyan-Gurevich Mig-1/3 single-seat fighter. Also upload your photos, leave your comment and vote for your favorite aircraft.
Functional domains in the Mig1 repressor - PubMed
Mig1 is a zinc finger protein that mediates glucose repression in the yeast Saccharomyces cerevisiae. It is related to the mammalian Krox/Egr, Wilms' tumor, and Sp1 proteins and binds to a GC-rich motif that resembles the GC boxes recognized by these proteins.
MiG-1 | Soviet aircraft | Britannica
Where Do Antisemitic Conspiracy Theories About the Rothschild Family Come From? …which eventually bore the name MiG-1 (MiG being a formation of the first letters of Mikoyan and Gurevich plus i, the Russian word for and). An improved version, the MiG-3, soon followed.
Mikoyan-Gurevich MiG-1 | Aircraft Wiki | Fandom
The MiG-1 was a Soviet World War II monoplane designed as a high altitude fighter. Flight testing proved that it had many deficiencies, but it was still ordered into production. 100 were built by the time the design was modified into. the MiG-3. Community content is available under CC-BY-SA unless otherwise noted.
Snf1 Protein Kinase Regulates Phosphorylation of the Mig1 …
Mig1 is a Cys 2-His 2 zinc finger protein that binds to the promoters of SUC, GAL, MAL, and other glucose-repressible genes; mutation of Mig1 or its binding sites partially relieves glucose repression (15, 17, 22, 25, 35, 36, 44, 53, 55). A LexA-Mig1 fusion protein represses transcription of a CYC1-lacZ reporter containing lexA operators.
Regulated nuclear translocation of the Mig1 glucose repressor.
Mig1 is a Cys2-His2 zinc finger protein that mediates glucose repression of several genes by binding to their promoters and recruiting the general repression complex Ssn6-Tup1. We have found that the subcellular localization of Mig1 is regulated by glucose.
Russian Aviation Resource Center - A Warbirds Resource Group …
According to a new naming system, from December 9 1940 the first 100 I-200 were designated MiG-1 (after the initials of Mikoyan and Gurevich), while further improved aircraft were designated MiG-3. The Russian Aviation Resource Center follows the history of …
The Story Behind The Original MiG Soviet Fighter Plane
2023年6月17日 · As one would expect, the first MiG was named the MiG-1, about which official information is scant. Eventually an upgraded MiG first entered the Soviet airborne arsenal in 1941 after successful...
The MiG 1.44/1.42; Mikoyan’s DIY “What-If?” - Ed Nash's Military ...
2023年3月13日 · To accomplish this MiG created an interesting design, the 1.44. The aircraft was a canard delta wing which combined with an inherently unstable flight profile controlled with a fly-by-wire system was intended for optimal air combat maneuverability.
The Nuclear Pore Complex Mediates Binding of the Mig1 …
2011年11月14日 · In Saccharomyces cerevisiae, the best-studied downstream effector of this response is the glucose-regulated repressor Mig1. We show here that nuclear pore complexes also contribute to glucose-regulated gene expression.
Functional Domains in the Mig1 Repressor - Taylor & Francis Online
2023年3月29日 · Mig1 is a zinc finger protein that mediates glucose repression in the yeast Saccharomyces cerevisiae. It is related to the mammalian Krox/Egr, Wilms’ tumor, and Sp1 proteins and binds to a GC-rich motif that resembles the GC boxes recognized by these proteins.
ER–mitochondria encounter structure connections determine drug ...
5 天之前 · Mig1 and HapX were also required together for survival in macrophages, but Mig1 alone had a minimal impact on virulence in mice. Overall, these studies provide novel insights into a HapX/Mig1 ...
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