Kalebina Tatyana S, Rekstina Valentina V, Pogarskaia Elizaveta E, Kulakovskaya Tatiana
Department of Molecular Biology, Faculty of Biology, Lomonosov Moscow State University, Moscow 119991, Russia.
Federal Research Center "Pushchino Scientific Center for Biological Research of the Russian Academy of Sciences", Skryabin Institute of Biochemistry and Physiology of Microorganisms, Pushchino 142290, Russia.
Int J Mol Sci. 2024 Feb 21;25(5):2496. doi: 10.3390/ijms25052496.
This review covers a group of non-covalently associated molecules, particularly proteins (NCAp), incorporated in the yeast cell wall (CW) with neither disulfide bridges with proteins covalently attached to polysaccharides nor other covalent bonds. Most NCAp, particularly Bgl2, are polysaccharide-remodeling enzymes. Either directly contacting their substrate or appearing as CW lipid-associated molecules, such as in vesicles, they represent the most movable enzymes and may play a central role in CW biogenesis. The absence of the covalent anchoring of NCAp allows them to be there where and when it is necessary. Another group of non-covalently attached to CW molecules are polyphosphates (polyP), the universal regulators of the activity of many enzymes. These anionic polymers are able to form complexes with metal ions and increase the diversity of non-covalent interactions through charged functional groups with both proteins and polysaccharides. The mechanism of regulation of polysaccharide-remodeling enzyme activity in the CW is unknown. We hypothesize that polyP content in the CW is regulated by another NCAp of the CW-acid phosphatase-which, along with post-translational modifications, may thus affect the activity, conformation and compartmentalization of Bgl2 and, possibly, some other polysaccharide-remodeling enzymes.
本综述涵盖了一组非共价结合的分子,特别是蛋白质(NCAp),它们存在于酵母细胞壁(CW)中,既没有与共价连接到多糖上的蛋白质形成二硫键,也没有其他共价键。大多数NCAp,特别是Bgl2,是多糖重塑酶。它们要么直接接触其底物,要么作为与细胞壁脂质相关的分子出现,比如在囊泡中,它们是最具移动性的酶,可能在细胞壁生物合成中起核心作用。NCAp缺乏共价锚定使其能够在需要的时间和地点出现。另一组非共价附着于细胞壁分子的是多聚磷酸盐(polyP),它是许多酶活性的通用调节剂。这些阴离子聚合物能够与金属离子形成复合物,并通过带电荷的官能团增加与蛋白质和多糖的非共价相互作用的多样性。细胞壁中多糖重塑酶活性的调节机制尚不清楚。我们推测,细胞壁中的多聚磷酸盐含量受另一种细胞壁酸性磷酸酶NCAp的调节,这与翻译后修饰一起,可能会影响Bgl2以及可能的其他一些多糖重塑酶的活性、构象和区室化。