Genes in this set(6):

     Std. name     Sys. name     SGDID
     LTE1     YAL024C     S000000022
     AMN1     YBR158W     S000000362
     CDH1     YGL003C     S000002971
     LEA1     YPL213W     S000006134
     CLB2     YPR119W     S000006323
     CLB5     YPR120C     S000006324

Enriched GO terms in this set:

GO:0008150 (biological_process)
"Those processes specifically pertinent to the functioning of integrated living units: cells, tissues, organs, and organisms. A process is a collection of molecular events with a defined beginning and end."

    GO:0065007 (biological regulation)
    "Any process that modulates the frequency, rate or extent of any biological process, quality or function."

        GO:0050789 (regulation of biological process)
        "Any process that modulates the frequency, rate or extent of a biological process. Biological processes are regulated by many means; examples include the control of gene expression, protein modification or interaction with a protein or substrate molecule."

            GO:0050794 (regulation of cellular process)
            "Any process that modulates the frequency, rate or extent of cellular processes, those that are carried out at the cellular level, but are not necessarily restricted to a single cell. For example, cell communication occurs among more than one cell, but occurs at the cellular level."

                GO:0051726 (regulation of cell cycle) [p = 0.001   (5/88: LTE1; AMN1; CDH1; CLB2; CLB5)]
                "Any process that modulates the rate or extent of progression through the cell cycle."

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GO:0008150 (biological_process)
"Those processes specifically pertinent to the functioning of integrated living units: cells, tissues, organs, and organisms. A process is a collection of molecular events with a defined beginning and end."

    GO:0065007 (biological regulation)
    "Any process that modulates the frequency, rate or extent of any biological process, quality or function."

        GO:0050789 (regulation of biological process)
        "Any process that modulates the frequency, rate or extent of a biological process. Biological processes are regulated by many means; examples include the control of gene expression, protein modification or interaction with a protein or substrate molecule."

            GO:0050794 (regulation of cellular process)
            "Any process that modulates the frequency, rate or extent of cellular processes, those that are carried out at the cellular level, but are not necessarily restricted to a single cell. For example, cell communication occurs among more than one cell, but occurs at the cellular level."

                GO:0051726 (regulation of cell cycle) [p = 0.001   (5/88: LTE1; AMN1; CDH1; CLB2; CLB5)]
                "Any process that modulates the rate or extent of progression through the cell cycle."

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GO:0008150 (biological_process)
"Those processes specifically pertinent to the functioning of integrated living units: cells, tissues, organs, and organisms. A process is a collection of molecular events with a defined beginning and end."

    GO:0009987 (cellular process)
    "Processes that are carried out at the cellular level, but are not necessarily restricted to a single cell. For example, cell communication occurs among more than one cell, but occurs at the cellular level."

        GO:0007049 (cell cycle)
        "The progression of biochemical and morphological phases and events that occur in a cell during successive cell replication or nuclear replication events. Canonically, the cell cycle comprises the replication and segregation of genetic material followed by the division of the cell, but in endocycles or syncytial cells nuclear replication or nuclear division may not be followed by cell division."

            GO:0000278 (mitotic cell cycle) [p = 0.001   (5/117: LTE1; AMN1; CDH1; CLB2; CLB5)]
            "Progression through the phases of the mitotic cell cycle, the most common eukaryotic cell cycle, which canonically comprises four successive phases called G1, S, G2, and M and includes replication of the genome and the subsequent segregation of chromosomes into daughter cells. In some variant cell cycles nuclear replication or nuclear division may not be followed by cell division, or G1 and G2 phases may be absent."

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