Tamura Haruka, Saito Yohtaro, Ashida Hiroki, Kai Yasushi, Inoue Tsuyoshi, Yokota Akiho, Matsumura Hiroyoshi
Department of Applied Chemistry, Graduate School of Engineering, Osaka University, Suita, Osaka, Japan.
Acta Crystallogr D Biol Crystallogr. 2009 Sep;65(Pt 9):942-51. doi: 10.1107/S0907444909022422. Epub 2009 Aug 14.
2,3-Diketo-5-methylthiopentyl-1-phosphate enolase (DK-MTP-1P enolase), a RuBisCO-like protein (RLP), catalyzes the enolization of 2,3-diketo-5-methylthiopentyl-1-phosphate. The crystal structure of the apo decarbamylated form (E form) of Bacillus subtilis DK-MTP-1P enolase (Bs-DK-MTP-1P enolase) has been determined at 2.3 A resolution. The overall structure of the E form of Bs-DK-MTP-1P enolase highly resembles that of Geobacillus kaustophilus DK-MTP-1P enolase (Gk-DK-MTP-1P enolase), with the exception of a few insertions or deletions and of a few residues at the active site. In the E form of Bs-DK-MTP-1P enolase, Lys150 (equivalent to Lys175 in RuBisCO) at the active site adopts a conformation that is distinct from those observed in the other forms of Gk-DK-MTP-1P enolase. This unusual conformational change appears to be induced by changes in the varphi and psi angles of Gly151, which is conserved in the sequences of the Bs-DK-MTP-1P and Gk-DK-MTP-1P enolases but not in those of RuBisCOs. The loop at 303-312, equivalent to the catalytic loop termed ;loop-6' in RuBisCO, is in a closed conformation in the E form of Bs-DK-MTP-1P enolase. The closed conformation appears to be stabilized by Pro312, which is conserved in the sequences of several RLPs (equivalent to Glu338 in RuBisCO). Based on these results, the characteristic structural features of DK-MTP-1P enolase are discussed.
2,3-二酮-5-甲基硫代戊基-1-磷酸烯醇酶(DK-MTP-1P烯醇酶),一种类核酮糖-1,5-二磷酸羧化酶(RLP),催化2,3-二酮-5-甲基硫代戊基-1-磷酸的烯醇化反应。枯草芽孢杆菌DK-MTP-1P烯醇酶(Bs-DK-MTP-1P烯醇酶)的脱氨甲酰化脱辅基形式(E形式)的晶体结构已在2.3埃分辨率下确定。Bs-DK-MTP-1P烯醇酶E形式的整体结构与嗜碱栖热菌DK-MTP-1P烯醇酶(Gk-DK-MTP-1P烯醇酶)的结构高度相似,只是有一些插入或缺失以及活性位点的一些残基不同。在Bs-DK-MTP-1P烯醇酶的E形式中,活性位点的Lys150(相当于核酮糖-1,5-二磷酸羧化酶中的Lys175)采用了一种与Gk-DK-MTP-1P烯醇酶其他形式中观察到的构象不同的构象。这种不寻常的构象变化似乎是由Gly151的φ和ψ角的变化诱导的,Gly151在Bs-DK-MTP-1P和Gk-DK-MTP-1P烯醇酶的序列中保守,但在核酮糖-1,5-二磷酸羧化酶的序列中不保守。303-312位的环,相当于核酮糖-1,5-二磷酸羧化酶中称为“环-6”的催化环,在Bs-DK-MTP-1P烯醇酶的E形式中处于封闭构象。这种封闭构象似乎由Pro312稳定,Pro312在几种RLP的序列中保守(相当于核酮糖-1,5-二磷酸羧化酶中的Glu338)。基于这些结果,讨论了DK-MTP-1P烯醇酶的特征结构特征。