Shivaiah Kiran-Kumar, Subedi Ganesh P, Barb Adam W, Nikolau Basil J
Roy J. Carver Department of Biochemistry, Biophysics, and Molecular Biology Iowa State University Ames Iowa USA.
Center for Biorenewable Chemicals Iowa State University Ames Iowa USA.
Plant Direct. 2025 Mar 21;9(3):e70057. doi: 10.1002/pld3.70057. eCollection 2025 Mar.
Biotin carboxyl carrier protein (BCCP) is a subunit of the heteromeric acetyl-CoA carboxylase (htACCase), and it chemically links the two half-reactions that constitute the formation of malonyl-CoA from acetyl-CoA, a critical reaction in fatty acid biosynthesis. Because plants are a major source of edible fats and oils, it is important to understand the structural organization of the plant htACCase, relative to its potential to regulate fatty acid biosynthesis in plant plastids. Moreover, unique to the plant htACCase, noncatalytic subunits called biotin attachment domain-containing (BADC) proteins are important in the assembly of the holoenzyme, and they specifically interact with the bcCP and the biotin carboxylase (BC) subunits. We report herein NMR structural studies of the Arabidopsis BCCP isozymes (bcCP1 and BCCP2). We calculated the structure of C-terminal domain of BCCP1 (K-P) and explored structural changes in the BCCP1 protein upon its interactions with bc and BADC. The chemical shift perturbation experiments identified potential surface residues on the BCCP1 protein that may facilitate physical interactions between BC and BADC proteins. These studies indicate that the BADC protein interacts with a "thumb"-like protrusion, which is a common structural feature of the bacterial and plant bcCPs, and thereby acts as a potential "cap" to facilitate the assembly of a BC-BCCP-BADC complex.
生物素羧基载体蛋白(BCCP)是异源二聚体乙酰辅酶A羧化酶(htACCase)的一个亚基,它在化学上连接了由乙酰辅酶A形成丙二酰辅酶A的两个半反应,这是脂肪酸生物合成中的一个关键反应。由于植物是食用油脂的主要来源,了解植物htACCase的结构组织及其调节植物质体中脂肪酸生物合成的潜力非常重要。此外,植物htACCase特有的是,称为含生物素附着结构域(BADC)的非催化亚基在全酶组装中很重要,它们特异性地与bcCP和生物素羧化酶(BC)亚基相互作用。我们在此报告拟南芥BCCP同工酶(bcCP1和BCCP2)的核磁共振结构研究。我们计算了BCCP1(K-P)的C末端结构域的结构,并探讨了BCCP1蛋白与bc和BADC相互作用时的结构变化。化学位移扰动实验确定了BCCP1蛋白上可能促进BC和BADC蛋白之间物理相互作用的潜在表面残基。这些研究表明,BADC蛋白与一个“拇指”样突出结构相互作用,这是细菌和植物bcCPs的共同结构特征,因此它可能作为一个潜在的“帽”来促进BC-BCCP-BADC复合物的组装。