Bartnicki-Garcia Salomon
Department of Microbiology, Division of Experimental and Applied Biology, CICESE (Center for Scientific Investigation & Higher Education of Ensenada), Baja California, Mexico.
FEMS Yeast Res. 2006 Nov;6(7):957-65. doi: 10.1111/j.1567-1364.2006.00158.x. Epub 2006 Sep 19.
José Ruiz-Herrera's discovery that chitin microfibrils could be made by a fungal extract paved the way for elucidating the intracellular location of chitin synthetase. In collaboration with Charles Bracker, chitosomes were identified as the major reservoir of chitin synthetase in fungi. Unique in size, buoyant density, and membrane thickness, chitosomes were found in a wide range of fungi. Their reversible dissociation into 16S subunits is another unique property of chitosomes. These 16S subunits are the smallest molecular entities known to retain chitin synthetase activity. Further dissociation leads to complete loss of activity. From studies with secretory mutants, yeast researchers concluded that chitosomes were components of the endocytosis pathway. However, key structural and enzymatic characteristics argue in favor of the chitosome being poised for exocytotic delivery rather than endocytotic recycling. The chitosome represents the main vehicle for delivering chitin synthetase to the cell surface. An immediate challenge is to elucidate chitosome ontogeny and the role of proteins encoded by the reported chitin synthetase genes in the structure or function of chitosomes. The ultimate challenge would be to understand how the chitosome integrates with the cell surface to construct the organized microfibrillar skeleton of the fungal cell wall.
何塞·鲁伊斯 - 埃雷拉发现真菌提取物能够制造几丁质微纤维,这为阐明几丁质合成酶的细胞内定位铺平了道路。他与查尔斯·布拉克合作,确定几丁质体是真菌中几丁质合成酶的主要储存库。几丁质体在大小、浮力密度和膜厚度方面具有独特性,在多种真菌中都能发现。它们可逆解离成16S亚基是几丁质体的另一个独特特性。这些16S亚基是已知保留几丁质合成酶活性的最小分子实体。进一步解离会导致活性完全丧失。通过对分泌突变体的研究,酵母研究人员得出结论,几丁质体是内吞途径的组成部分。然而,关键的结构和酶学特征表明,几丁质体倾向于用于胞吐运输,而非内吞循环。几丁质体是将几丁质合成酶输送到细胞表面的主要载体。一个紧迫的挑战是阐明几丁质体的个体发生以及已报道的几丁质合成酶基因所编码的蛋白质在几丁质体结构或功能中的作用。最终的挑战将是了解几丁质体如何与细胞表面整合,以构建真菌细胞壁有组织的微纤维骨架。