The Importance of Tyr-475 and Glu-506 in $\beta$-Galactosidase from L. lactis ssp.lactis 7962
Eun Ju Yang, Jungmin Lee, Hyong-Joo Lee, Jeong-Hwan Kim, Dae‐Kyun Chung, Jong‐Hoon Lee, Hae Choon Chang
Abstract
Eun Ju Yang, Jungmin Lee, Hyong-Joo Lee, Jeong-Hwan Kim, Dae‐Kyun Chung, Jong‐Hoon Lee, Hae Choon Chang
Abstract
The secondary and tertiary structures of β-galactosidase from L. lactis ssp. lactis 7962 were designed using Nnpredict and Sybyl version 6.3. By using site-directed mutagenesis, the mutated enzymes, Tyr-475-Phe and Glu-506-Asp, were generated based on the structural modeling of L. lactis ssp. lactis 7962. The enzymes Tyr-475-Phe and Glu-506-Asp had <1% of the activity of the native enzyme with ONPG as substrate. The V max values of the mutated enzymes were greatly reduced (1,800∼40,000-fold) compared with the value for the native β-galactosidase. However, the K m values of Tyr-475-Phe and Glu-506-Asp with ONPG, PNPG, PNPF, and PNPA were not significantly different from those of the native enzyme. The results obtained support the suggestion that Tyr-475 and Glu-506 constitute very important parts of the catalytic machinery of the β-galactosidase.
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The secondary and tertiary structures of β-galactosidase from L. lactis ssp. lactis 7962 were designed using Nnpredict and Sybyl version 6.3. By using site-directed mutagenesis, the mutated enzymes, Tyr-475-Phe and Glu-506-Asp, were generated based on the structural modeling of L. lactis ssp. lactis 7962. The enzymes Tyr-475-Phe and Glu-506-Asp had <1% of the activity of the native enzyme with ONPG as substrate. The V max values of the mutated enzymes were greatly reduced (1,800∼40,000-fold) compared with the value for the native β-galactosidase. However, the K m values of Tyr-475-Phe and Glu-506-Asp with ONPG, PNPG, PNPF, and PNPA were not significantly different from those of the native enzyme. The results obtained support the suggestion that Tyr-475 and Glu-506 constitute very important parts of the catalytic machinery of the β-galactosidase.
Key concepts: Enzyme, Mutagenesis, Biochemistry, Biology, Beta-galactosidase, Substrate specificity, Stereochemistry, Chemistry