Cooking, Frying, Roasting: How Heat Changes Protein Quality

Heat can make protein easier to digest, or it can damage it. Which effect wins depends on the food and on the temperature. The studies give some surprisingly clear numbers on this.

Updated: October 7, 2026 · Based on 5 scientific sources

In short

Heat works both ways. Cooking is what makes some proteins properly digestible: in a study with humans, cooked egg protein was 90 % digested, raw only 51 %. Too much or too direct heat does harm: fried ground beef lost quality, and in roasted pistachios the digestibility of lysine went down. Lysine is the most sensitive amino acid.

Why heat helps

When proteins are heated, they unfold. Digestive enzymes can then reach them more easily. In plants, heat also destroys compounds that slow down digestion, such as trypsin inhibitors. Moughan & Lim 2024 write that processing such as soaking, heating or extrusion often increases digestibility, especially in plant foods. That is why they call for foods to be tested the way people actually eat them, not raw.

Two examples from an FAO report (FAO sub-committee 2012):

FoodrawcookedMeasurement
Egg, protein digestibility51 %90 %humans, small intestine
Soybean meal (defatted), protein digestibility37 %77 %pigs, small intestine (apparent), autoclaved
Soybean meal, lysine digestibility41 %80 %as above
Data: FAO sub-committee 2012 (section 3b and Table 3c, citing the original studies). The raw soybean meal contained active trypsin inhibitors.

The egg result comes from one of the few studies that measured directly in humans. Raw egg protein was only about half digested there.

Meat: cook it, but don't overcook it

Bailey et al. 2020 studied in pigs how the way beef is prepared affects it. Beef roast (ribeye) was cooked in a smokehouse at 121 °C to three core temperatures: 56 °C (medium rare), 64 °C (medium) and 72 °C (well done). Ground beef was tested raw and fully cooked. For that, it was browned in a kettle until no pink was visible and it had reached over 72 °C.

Beef by preparation method
Ground beef, raw121
Ground beef, well donelimited by leucine99
Roast 56 °Cmedium rare111
Roast 64 °Cmedium130
Roast 72 °Cwell done107

Line = 100, from here on fully usable. DIAAS for adults, measured in pigs. Data: Bailey et al. 2020, Table 6.

The authors name oxidation as a possible cause: when heated, reactive groups can form in the protein that alter mainly lysine, histidine and arginine. Ground meat is more prone to this because grinding gives it more surface area in contact with oxygen. A whole roast is better protected. Their conclusion: meat that is ground or cooked with direct heat in a pan can lose quality, especially when it is overcooked. A meat thermometer could help.

For context: 99 is still a very good value. Other researchers found lower values for beef (raw 97, cooked 91). The authors attribute this to differences in fat, in the measurement method and in the unreported reference pattern.

Pistachios: roasting costs lysine

Bailey & Stein 2020 fed raw and roasted pistachios to pigs. They were roasted the way the industry usually does it: about 30 minutes in a roaster preheated to 176 °C, until the nuts reached 115 °C.

Digestibility of raw and roasted pistachios
Lysine, raw86.6
Lysine, roasted77.0
Essential amino acids, rawmean89.8
Essential amino acids, roastedmean81.1

Standardized ileal digestibility in %, measured in pigs. Data: Bailey & Stein 2020, Table 4.

After roasting, almost all essential amino acids were digested less well. The authors suspect heat damage and clumping of the proteins, which can happen at temperatures above 100 °C and affects lysine, histidine and arginine in particular.

The DIAAS dropped from 86 to 83, limited by lysine both times. This difference was not statistically significant, and both versions count as a good protein source. One detail is interesting: the older score PDCAAS, calculated with a different reference pattern, actually went up after roasting, from 73 to 81. The authors conclude that DIAAS reflects heat damage better than PDCAAS. More on these scores in the article Biological value vs. DIAAS.

Why lysine in particular suffers

When heated, especially dry and in the presence of sugar, lysine reacts with other molecules. This is the Maillard reaction, which also creates browning and roasted flavors. The body can no longer use the altered lysine. Moughan & Lim 2024 write that lysine is the amino acid most easily damaged during processing. Arginine, methionine, cysteine, threonine and tryptophan can also be affected.

That is doubly unfortunate, because lysine is already the scarcest amino acid in grains. How much this matters for bread and breakfast cereals is covered in the articles Bread and grains and Cornflakes and breakfast cereals. Herreman et al. 2020 cite a study in which soybean meal and rapeseed meal lost 30 to 40 % of their usable lysine after toasting with sugar.

What you can take away

Limitations of the studies

Frequently asked questions

Is cooked egg better than raw egg?

For the protein, yes. In a study with humans, cooked egg protein was about 90 % digested, raw egg protein only about 51 %.

Does meat lose protein quality when you cook it?

It depends on how it is cooked. A beef roast stayed excellent at core temperatures of 56, 64 and 72 °C. Well-done ground beef, on the other hand, dropped from a DIAAS of 121 to 99. The authors advise against overcooking meat.

Why is lysine so sensitive?

When heated, lysine reacts with sugars and other compounds, the so-called Maillard reaction. The body can no longer use the altered lysine. According to a review, lysine is the amino acid most easily damaged during processing.

How does your meal score?

Go to the calculator

Sources

  1. Moughan, P. J., Gilani, S., Rutherfurd, S. M. & Tomé, D. (2012): Report of a Sub-Committee of the 2011 FAO Consultation on “Protein Quality Evaluation in Human Nutrition”, with appendix by Moughan & Rutherfurd: True ileal amino acid and protein digestibility for selected human foods. FAO, Rome.
  2. Bailey, H. M., Mathai, J. K., Berg, E. P. & Stein, H. H. (2020): Most meat products have digestible indispensable amino acid scores that are greater than 100, but processing may increase or reduce protein quality. British Journal of Nutrition 124, 14–22. doi:10.1017/S0007114520000641
  3. Bailey, H. M. & Stein, H. H. (2020): Raw and roasted pistachio nuts (Pistacia vera L.) are ‘good’ sources of protein based on their digestible indispensable amino acid score as determined in pigs. Journal of the Science of Food and Agriculture 100, 3878–3885. doi:10.1002/jsfa.10429
  4. Moughan, P. J. & Lim, W. X. J. (2024): Digestible indispensable amino acid score (DIAAS): 10 years on. Frontiers in Nutrition 11, 1389719. doi:10.3389/fnut.2024.1389719
  5. Herreman, L., Nommensen, P., Pennings, B. & Laus, M. C. (2020): Comprehensive overview of the quality of plant- and animal-sourced proteins based on the digestible indispensable amino acid score. Food Science & Nutrition 8, 5379–5391. doi:10.1002/fsn3.1809

Values for individual foods and where they come from are listed under Data & sources. How proteinscore calculates is explained under Method.

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