How are the alpha helices that make up hemocyanin held together? Identify the atoms that interact and the nature of their interaction.

Biochemistry After passing biochemistry with an A, you accept a position in a biochemistry lab that studies oxygen transport in limpets. You are tasked with characterizing the copper containing oxygen transport protein known as Hemocyanin. a. How are the alpha helices that make up hemocyanin held together? Identify the atoms that interact and the nature … Read more

Using a variety of examples, describe and discuss some of the chemical reactions that enzymes facilitate in photosynthesis and cellular respiration.

Biochemistry Enzymes can be described as biological catalysts that regulate the rate of chemical reactions involved in biological processes. Different types of chemical reactions are catalyzed by different classes of enzyme. Using a variety of examples, describe and discuss some of the chemical reactions that enzymes facilitate in photosynthesis and cellular respiration.

Using the case study and biochemical data, explain your differential diagnosis in this patient and what causes this condition.

Biochemistry Case Studies. Nandita has been diagnosed with osteomalacia . The results from recent blood tests are given below. Analyte Patient result Reference range Units Serum adjusted Ca 2.0 2.1 – 2.6 mmol/L Serum intact PTH 7.5 1.6 – 6.9 pmol/L Serum 25(OH)D 15 >50 nmol/L Using this case study as an example, critically discuss … Read more

Health implication : Write a 1-page double spaced summary based on a topic of your choice from course BIOL 2020.

Health implication Write a 1-page double spaced summary based on a topic of your choice from course BIOL 2020. Relate your topic to a disease, disorder, syndrome, or health implication that you are interested in. 1 page (max), double spaced, 11-12 pt. font Arial or Calibri, 2.5-inch margins or standard. Introduction (3 marks) ● Brief … Read more

Biochemistry: demonstrate understanding of the molecular and cellular mechanisms involved in metabolic pathways through the relationship between biochemical and biotechnological systems.

Biochemistry •Demonstrate understanding of the molecular and cellular mechanisms involved in metabolic pathways through the relationship between biochemical and biotechnological systems. •Determine the activity of succinate dehydrogenase and its kinetics using a mitochondrial extract