Related Experiment Video
Updated: Jan 23, 2026

03:59
Surgical Correction for Pediatric Epiblepharon and Trichiasis
Published on: July 8, 2025
548
Correction to: ADP-ribosylation and NAD+ Utilizing Enzymes
1Department of Biology, Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA, USA.
Methods in Molecular Biology (Clifton, N.J.)
|June 19, 2019
Summary
A correction has been made to the publication record of William Lee Kraus. His name in the PubMed database has been updated to Kraus WL for accuracy.
Area of Science:
- Bibliometrics
- Scientific Publishing
Background:
- Accurate author attribution is crucial in scientific literature.
- Database indexing requires precise name formatting for discoverability.
Purpose of the Study:
- To correct an error in the PubMed publication record.
- To ensure accurate identification of the author William Lee Kraus.
Main Methods:
- Review of the PubMed database entry for the publication.
- Implementation of a name correction request.
Main Results:
- The author's name has been corrected in PubMed.
- The corrected name is now listed as Kraus WL.
Conclusions:
- The PubMed record for William Lee Kraus has been rectified.
- Ensuring data integrity in scientific databases is essential.
Related Concept Videos
The ADP/ATP Carrier Protein
4.2K
ADP/ATP carrier or AAC protein is the most abundant carrier protein in the inner mitochondrial membrane. It transports large quantities of ADP and ATP, equivalent to the average human body weight, every day. Among other transporters, ACC protein is one of the best-studied members of the mitochondrial carrier protein family. The ADP/ATP carrier protein comprises two transmembrane helices connected to a loop and a single alpha-helix on the matrix side. It switches between two conformational...
4.2K
Distance Corrections
285
To achieve precise distance measurements, especially in surveying and construction, certain corrections must be applied to account for potential sources of error like the standardization errors, temperature variations, and slope adjustments.Standardization error emerges when measurement equipment undergoes changes, such as wear, repairs, or weather impacts. To address this, surveyors compare the equipment’s readings to a standard. This process identifies any deviation that might lead to...
285
Enzymes
93.9K
Inside living organisms, enzymes act as catalysts for many biochemical reactions involved in cellular metabolism. The role of enzymes is to reduce the activation energies of biochemical reactions by forming complexes with its substrates. The lowering of activation energies favor an increase in the rates of biochemical reactions.
Enzyme deficiencies can often translate into life-threatening diseases. For example, a genetic abnormality resulting in the deficiency of the enzyme G6PD...
Enzyme deficiencies can often translate into life-threatening diseases. For example, a genetic abnormality resulting in the deficiency of the enzyme G6PD...
93.9K
Power Factor Correction
509
The power transmission to a factory involves the transfer of apparent power, a combination of active and reactive power. The power factor measures how effectively electrical power is converted into useful work output. The ratio of the real power (KW) that does the work to the apparent power (KVA) supplied to the circuit.
509
Enzyme Kinetics
103.9K
Enzymes speed up reactions by lowering the activation energy of the reactants. The speed at which the enzyme turns reactants into products is called the rate of reaction. Several factors impact the rate of reaction, including the number of available reactants. Enzyme kinetics is the study of how an enzyme changes the rate of a reaction.
Scientists typically study enzyme kinetics with a fixed amount of enzyme in the controlled environment of a test tube. When more reactant, or substrate, is...
Scientists typically study enzyme kinetics with a fixed amount of enzyme in the controlled environment of a test tube. When more reactant, or substrate, is...
103.9K
Energy-releasing Steps of Glycolysis
146.5K
Glycolysis is divided into two phases based on whether energy is utilized or released. While the first phase consumes ATP, the second phase produces energy in the form of ATP and NADH. The energy is released over a sequence of reactions that turns G3P into pyruvate. The energy-releasing phase—steps 6-10 of glycolysis—occurs twice, once for each of the two 3-carbon sugars produced during steps 1-5 of the first phase.
The first energy-releasing step—the 6th step of glycolysis...
The first energy-releasing step—the 6th step of glycolysis...
146.5K

