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In plants, carbonic anhydrase helps raise the concentration of CO 2 within the chloroplast in order to increase the carboxylation rate of the enzyme RuBisCO. This is the reaction that integrates CO 2 into organic carbon sugars during photosynthesis , and can use only the CO 2 form of carbon, not carbonic acid or bicarbonate.
3 ions are made from CO 2 outside the cell by another carbonic anhydrase and are actively pumped into the cell by a membrane protein. They cannot cross the membrane as they are charged, and within the cytosol they turn back into CO 2 very slowly without the help of carbonic anhydrase.
Carbonic anhydrase needs a family of carbon base enzymes for the hydration of carbon dioxide and acid–base homeostasis, that regulates PH levels in life. [32] [33] In plant life, liquid water is needed for photosynthesis, the biological process plants use to convert light energy and carbon dioxide into chemical energy. [34]
Carbonic anhydrase, an enzyme that requires zinc (gray sphere in this image), is essential for plant health. [1] Zinc deficiency occurs when plant growth is limited because the plant cannot take up sufficient quantities of this essential micronutrient from its growing medium. Zinc is one of the most important micronutrients. [2]
Carbonic anhydrases (CAs) are a large family of zinc metalloenzymes that catalyze the reversible hydration of carbon dioxide. They participate in a variety of biological processes, including respiration, calcification, acid-base balance, bone resorption, and the formation of aqueous humor, cerebrospinal fluid, saliva, and gastric acid.
The reaction catalyzed by CA1 is the same as other carbonic anhydrase family proteins: + (in tissues - high CO 2 concentration) [9]. The CA1-catalyzed reaction has a relatively low reaction affinity (Km) of 4.0 mM for CO 2, [7] [10] turnover number (Kcat) of 2 × 10 5 s −1, and catalytic efficiency (Kcat/Km) of 5 × 10 7 M −1 s −1 comparing to other isozymes of the α-CA family of ...
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Carbonic anhydrases (CAs) are a large family of zinc metalloenzymes that catalyze the reversible hydration of carbon dioxide. They participate in a variety of biological processes, including respiration, calcification, acid-base balance, bone resorption, and the formation of aqueous humor, cerebrospinal fluid, saliva, and gastric acid.