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Introduction to Proteins: Understanding their structure and function in food

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Proteins are one of the most important macronutrients found in food, providing the body with essential amino acids necessary for growth and maintenance. But what exactly are proteins, and how do they function in food? In this blog, we will explore the basic structure and properties of proteins, the different types of proteins, and their functional properties in various food preparations.

What are Proteins?

Proteins are large, complex molecules made up of amino acids, which are linked together in a specific sequence. There are 20 different types of amino acids that can be arranged in different ways to create a wide variety of proteins. Proteins are essential for the growth and repair of tissues in the body and are involved in many biological processes, such as enzymes that catalyze chemical reactions, and antibodies that help the body fight infections.

Basic Structure and Properties of Proteins

The structure of proteins can be divided into four levels: primary, secondary, tertiary, and quaternary. The primary structure refers to the sequence of amino acids in a protein. The secondary structure refers to the folding of the protein chain into alpha helices or beta sheets. The tertiary structure refers to the 3D structure of the protein, while the quaternary structure refers to the arrangement of multiple protein subunits.

Proteins have a wide range of physical and chemical properties, such as solubility, viscosity, and gelation. These properties are influenced by various factors, including pH, temperature, and the presence of other substances.

Types of Proteins

Proteins can be classified into two broad categories based on their origin: plant-based and animal-based. Plant-based proteins are found in sources such as grains, legumes, and vegetables, while animal-based proteins are found in sources such as meat, fish, and dairy products.

Effect of Heat on Proteins

When proteins are exposed to heat, they undergo denaturation, which refers to the unfolding of the protein’s structure. This can lead to coagulation, which is the thickening and solidifying of the protein, as seen in cooked eggs. Denaturation can also cause proteins to lose their functional properties, such as their ability to form gels, emulsions, or foams.

Functional Properties of Proteins in Food

Proteins have many functional properties that make them useful in a wide range of food preparations. For example, the ability of proteins to form gels is used in the production of jellies and custards, while their emulsifying properties are utilized in the creation of mayonnaise and salad dressings. Proteins can also be used to create foams, such as in meringues and whipped cream.

Commercial Uses of Proteins in Food Preparations

Proteins are widely used in the food industry for their functional properties. For example, egg gels are used in the production of baked goods such as cakes and muffins. Gelatin gels are used in the production of jellies and other confectionery items. Proteins are also used in the production of soups, curries, and other food products to provide texture and mouthfeel.

Conclusion

Proteins are an essential component of the human diet, providing the body with the necessary amino acids required for growth and maintenance. They are a versatile ingredient in food preparations, providing a range of functional properties that make them essential in the food industry. Understanding the basic structure and properties of proteins can help us better appreciate their role in the food we eat.

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Syllabus BHM117

01 Definition and scope of food science

  1. It’s inter-relationship with food chemistry, food microbiology and food processing.

02 Carbohydrates

  1. Introduction
  2. Effect of cooking (gelatinisation and retrogradation)
  3. Factors affecting texture of carbohydrates (Stiffness of CHO gel & dextrinization)
  4. Uses of carbohydrates in food preparations

03 Fat & Oils

  1. Classification (based on the origin and degree of saturation)
  2. Autoxidation (factors and prevention measures)
  3. Flavour reversion
  4. Refining, Hydrogenation & winterisation
  5. Effect of heating on fats & oils with respect to smoke point
  6. Commercial uses of fats (with emphasis on shortening value of different fats)

04 Proteins

  1. Basic structure and properties
  2. Type of proteins based on their origin (plant/animal)
  3. Effect of heat on proteins (Denaturation, coagulation)
  4. Functional properties of proteins (Gelation, Emulsification, Foamability, Viscosity)
  5. Commercial uses of proteins in different food preparations(like Egg gels, Gelatin gels, Cakes, Confectionary items, Meringues, Souffles, Custards, Soups, Curries etc.)

05 Food Processing

  1. Definition
  2. Objectives
  3. Types of treatment
  4. Effect of factors like heat, acid, alkali on food constituents

06 Evaluation of Food

  1. Objectives
  2. Sensory assessment of food quality
  3. Methods
  4. Introduction to proximate analysis of Food constituents
  5. Rheological aspects of food

07 Emulsions

  1. Theory of emulsification
  2. Types of emulsions
  3. Emulsifying agents
  4. Role of emulsifying agents in food emulsions

08 Colloids

  1. Definition
  2. Application of colloid systems in food preparation

09 Flavour

  1. Definition
  2. Description of food flavours (tea, coffee, wine, meat, fish spices)

10 Browning

  1. Types (enzymatic and non-enzymatic)
  2. Role in food preparation
  3. Prevention of undesirable browning