【2h】

How many membrane proteins are there?

机译:有多少膜蛋白?

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摘要

One of the basic issues that arises in functional genomics is the ability to predict the subcellular location of proteins that are deduced from gene and genome sequencing. In particular, one would like to be able to readily specify those proteins that are soluble and those that are inserted in a membrane. Traditional methods of distinguishing between these two locations have relied on extensive, time-consuming biochemical studies. The alternative approach has been to make inferences based on a visual search of the amino acid sequences of presumed gene products for stretches of hydrophobic amino acids. This numerical, sequence-based approach is usually seen as a first approximation pending more reliable biochemical data. The recent availability of large and complete sequence data sets for several organisms allows us to determine just how accurate such a numerical approach could be, and to attempt to minimize and quantify the error involved. We have optimized a statistical approach to protein location determination. Using our approach, we have determined that surprisingly few proteins are misallocated using the numerical method. We also examine the biological implications of the success of this technique.
机译:功能基因组学中出现的基本问题之一是能够预测由基因和基因组测序推导的蛋白质的亚细胞位置的能力。特别地,人们希望能够容易地确定那些可溶的蛋白质和那些插入膜中的蛋白质。区分这两个位置的传统方法依靠大量耗时的生化研究。另一种方法是根据视觉上推定的疏水性氨基酸的基因产物的氨基酸序列进行推论。这种基于序列的数字方法通常被视为对更可靠的生化数据尚待研究的第一近似值。最近可获得的几种生物的大型完整序列数据集使我们能够确定这种数值方法的精确度,并试图最小化和量化所涉及的误差。我们优化了蛋白质位置确定的统计方法。使用我们的方法,我们已经确定,使用数值方法出乎意料的是几乎没有蛋白质被错误分配。我们还将研究此技术成功的生物学意义。

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